168 results on '"Golovatiuk, A"'
Search Results
2. Directional Sensitivity of the NEWSdm Experiment to Cosmic Ray Boosted Dark Matter
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Agafonova, N. Y., Alexandrov, A., Anokhina, A. M., Asada, T., Ashikhmin, V. V, Boccia, V., Centanni, D., Chernyavskii, M. M., D'Ambrosio, N., De Lellis, G., Di Crescenzo, A., Dowdy, Y. C., Dmitrievski, S., Enikeev, R. I., Galati, G., Galkin, V. I., Golovatiuk, A., Gorbunov, S. A., Gornushkin, Y., Guler, A. M., Gulyaeva, V. V., Iuliano, A., Khalikov, E. V., Kim, S. H., Konovalova, N. S., Krasilnikova, Y. O., Lauria, A., Lee, K. Y., Loschiavo, V. P., Managadze, A. K., Miloi, A., Montesi, M. C., Naka, T., Okateva, N. M., Park, B. D, Podgrudkov, D. A., Polukhina, N. G., Roganova, T. M., Rosa, G., Samoilov, M. A., Sadykov, Z. T., Saeki, K., Sato, O., Shakiryanova, I. R., Shchedrina, T. V., Shiraishi, T., Sohn, J. Y., Sotnikov, A., Starkov, N. I., Starkova, E. N., Strekalina, D. M., Tioukov, V., Ursov, E. D., Ustyuzhanin, A., Vasina, S., Voronkov, R. A., and Yoon, C. S.
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Astrophysics - Instrumentation and Methods for Astrophysics ,Astrophysics - Cosmology and Nongalactic Astrophysics - Abstract
We present a study of a directional search for Dark Matter boosted forward when scattered by cosmic-ray nuclei, using a module of the NEWSdm experiment. The boosted Dark Matter flux at the edge of the Earth's atmosphere is expected to be pointing to the Galactic Center, with a flux 15 to 20 times larger than in the transverse direction. The module of the NEWSdm experiment consists of a 10 kg stack of Nano Imaging Trackers, i.e.~newly developed nuclear emulsions with AgBr crystal sizes down to a few tens of nanometers. The module is installed on an equatorial telescope. The relatively long recoil tracks induced by boosted Dark Matter, combined with the nanometric granularity of the emulsion, result in an extremely low background. This makes an installation at the INFN Gran Sasso laboratory, both on the surface and underground, viable. A comparison between the two locations is made. The angular distribution of nuclear recoils induced by boosted Dark Matter in the emulsion films at the surface laboratory is expected to show an excess with a factor of 3.5 in the direction of the Galactic Center. This excess allows for a Dark Matter search with directional sensitivity. The surface laboratory configuration prevents the deterioration of the signal in the rock overburden and it emerges as the most powerful approach for a directional observation of boosted Dark Matter with high sensitivity. We show that, with this approach, a 10 kg module of the NEWSdm experiment exposed for one year at the Gran Sasso surface laboratory can probe Dark Matter masses between 1 keV/c$^2$ and 1 GeV/c$^2$ and cross-section values down to $10^{-30}$~cm$^2$ with a directional sensitive search., Comment: 15 pages, 14 figures, updated references, clarified discussion in intro section. Accepted in JCAP
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- 2023
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3. Assessment of Reflective Learning Strategies in Pediatric Surgery Course at Medical University
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Levytskyi, Anatolii, Vygovska, Oxana, Benzar, Iryna, and Golovatiuk, Dmytro
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The article is aimed at studying medical students' reflective strategies for learning the Pediatric Surgery course at medical university. We used a modified version of the Motivated Strategies for Learning questionnaire (Soemantri et al., 2018) which has four subscales: self-orientation, critical thinking, self-regulation, and feedback seeking. The self-orientation component deals with students' perceptions on their self-efficacy and internal motivation. The participants were fourty-six 5-th year medical students from the Bogomolets National Medical University, Kyiv, Ukraine. The survey was held in May 2021 when the students finished their spring semester in the online mode. We observed the prevalence of high and moderate levels in all the variables, but the indicators of Feedback seeking are lower which can be explained by the specificities of online learning. The authors propose methodological recommendations for educators how to create an environment for reflective learning to develop students' reflective skills and employ alternative assessment strategies in the classroom.
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- 2021
4. Measurement of the muon flux at the SND@LHC experiment
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R. Albanese, A. Alexandrov, F. Alicante, A. Anokhina, T. Asada, C. Battilana, A. Bay, C. Betancourt, D. Bick, R. Biswas, A. Blanco Castro, V. Boccia, M. Bogomilov, D. Bonacorsi, W. M. Bonivento, P. Bordalo, A. Boyarsky, S. Buontempo, M. Campanelli, T. Camporesi, V. Canale, A. Castro, D. Centanni, F. Cerutti, M. Chernyavskiy, K. -Y. Choi, S. Cholak, F. Cindolo, M. Climescu, A. P. Conaboy, G. M. Dallavalle, D. Davino, P. T. de Bryas, G. De Lellis, M. De Magistris, A. De Roeck, A. De Rújula, M. De Serio, D. De Simone, A. Di Crescenzo, R. Donà, O. Durhan, F. Fabbri, F. Fedotovs, M. Ferrillo, M. Ferro-Luzzi, R. A. Fini, A. Fiorillo, R. Fresa, W. Funk, F. M. Garay Walls, A. Golovatiuk, A. Golutvin, E. Graverini, A. M. Guler, V. Guliaeva, G. J. Haefeli, C. Hagner, J. C. Helo Herrera, E. van Herwijnen, P. Iengo, S. Ilieva, A. Infantino, A. Iuliano, R. Jacobsson, C. Kamiscioglu, A. M. Kauniskangas, E. Khalikov, S. H. Kim, Y. G. Kim, G. Klioutchnikov, M. Komatsu, N. Konovalova, S. Kuleshov, H. M. Lacker, O. Lantwin, F. Lasagni Manghi, A. Lauria, K. Y. Lee, K. S. Lee, S. Lo Meo, V. P. Loschiavo, S. Marcellini, A. Margiotta, A. Mascellani, A. Miano, A. Mikulenko, M. C. Montesi, F. L. Navarria, S. Ogawa, N. Okateva, M. Ovchynnikov, G. Paggi, B. D. Park, A. Pastore, A. Perrotta, D. Podgrudkov, N. Polukhina, A. Prota, A. Quercia, S. Ramos, A. Reghunath, T. Roganova, F. Ronchetti, T. Rovelli, O. Ruchayskiy, T. Ruf, M. Sabate Gilarte, Z. Sadykov, M. Samoilov, V. Scalera, W. Schmidt-Parzefall, O. Schneider, G. Sekhniaidze, N. Serra, M. Shaposhnikov, V. Shevchenko, T. Shchedrina, L. Shchutska, H. Shibuya, S. Simone, G. P. Siroli, G. Sirri, G. Soares, J. Y. Sohn, O. J. Soto Sandoval, M. Spurio, N. Starkov, I. Timiryasov, V. Tioukov, F. Tramontano, C. Trippl, E. Ursov, A. Ustyuzhanin, G. Vankova-Kirilova, V. Verguilov, N. Viegas Guerreiro Leonardo, C. Vilela, C. Visone, R. Wanke, E. Yaman, C. Yazici, C. S. Yoon, E. Zaffaroni, and J. Zamora Saa
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Astrophysics ,QB460-466 ,Nuclear and particle physics. Atomic energy. Radioactivity ,QC770-798 - Abstract
Abstract The Scattering and Neutrino Detector at the LHC (SND@LHC) started taking data at the beginning of Run 3 of the LHC. The experiment is designed to perform measurements with neutrinos produced in proton-proton collisions at the LHC in an energy range between 100 GeV and 1 TeV. It covers a previously unexplored pseudo-rapidity range of $$7.2
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- 2024
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5. Measurement of the muon flux at the SND@LHC experiment
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Albanese, R., Alexandrov, A., Alicante, F., Anokhina, A., Asada, T., Battilana, C., Bay, A., Betancourt, C., Bick, D., Biswas, R., Castro, A. Blanco, Boccia, V., Bogomilov, M., Bonacorsi, D., Bonivento, W. M., Bordalo, P., Boyarsky, A., Buontempo, S., Campanelli, M., Camporesi, T., Canale, V., Castro, A., Centanni, D., Cerutti, F., Chernyavskiy, M., Choi, K. -Y., Cholak, S., Cindolo, F., Climescu, M., Conaboy, A. P., Dallavalle, G. M., Davino, D., de Bryas, P. T., De Lellis, G., De Magistris, M., De Roeck, A., De Rújula, A., De Serio, M., De Simone, D., Crescenzo, A. Di, Donà, R., Durhan, O., Fabbri, F., Fedotovs, F., Ferrillo, M., Ferro-Luzzi, M., Fini, R. A., Fiorillo, A., Fresa, R., Funk, W., Walls, F. M. Garay, Golovatiuk, A., Golutvin, A., Graverini, E., Guler, A. M., Guliaeva, V., Haefeli, G. J., Hagner, C., Herrera, J. C. Helo, van Herwijnen, E., Iengo, P., Ilieva, S., Infantino, A., Iuliano, A., Jacobsson, R., Kamiscioglu, C., Kauniskangas, A. M., Khalikov, E., Kim, S. H., Kim, Y. G., Klioutchnikov, G., Komatsu, M., Konovalova, N., Kuleshov, S., Lacker, H. M., Lantwin, O., Manghi, F. Lasagni, Lauria, A., Lee, K. Y., Lee, K. S., Meo, S. Lo, Loschiavo, V. P., Marcellini, S., Margiotta, A., Mascellani, A., Miano, A., Mikulenko, A., Montesi, M. C., Navarria, F. L., Ogawa, S., Okateva, N., Ovchynnikov, M., Paggi, G., Park, B. D., Pastore, A., Perrotta, A., Podgrudkov, D., Polukhina, N., Prota, A., Quercia, A., Ramos, S., Reghunath, A., Roganova, T., Ronchetti, F., Rovelli, T., Ruchayskiy, O., Ruf, T., Gilarte, M. Sabate, Sadykov, Z., Samoilov, M., Scalera, V., Schmidt-Parzefall, W., Schneider, O., Sekhniaidze, G., Serra, N., Shaposhnikov, M., Shevchenko, V., Shchedrina, T., Shchutska, L., Shibuya, H., Simone, S., Siroli, G. P., Sirri, G., Soares, G., Sohn, J. Y., Sandoval, O. J. Soto, Spurio, M., Starkov, N., Timiryasov, I., Tioukov, V., Tramontano, F., Trippl, C., Ursov, E., Ustyuzhanin, A., Vankova-Kirilova, G., Verguilov, V., Leonardo, N. Viegas Guerreiro, Vilela, C., Visone, C., Wanke, R., Yaman, E., Yazici, C., Yoon, C. S., Zaffaroni, E., and Saa, J. Zamora
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- 2024
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6. Deep Learning for direct Dark Matter search with nuclear emulsions
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Golovatiuk, Artem, Ustyuzhanin, Andrey, Alexandrov, Andrey, and De Lellis, Giovanni
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High Energy Physics - Experiment ,Astrophysics - Instrumentation and Methods for Astrophysics - Abstract
We propose a new method for the discrimination of sub-micron nuclear recoil tracks from an instrumental background in fine-grain nuclear emulsions used in the directional dark matter search. The proposed method uses a 3D Convolutional Neural Network, whose parameters are optimised by Bayesian search. Unlike previous studies focused on extracting the directional information, we focus on the signal/background separation exploiting the polarisation dependence of the Localised Surface Plasmon Resonance phenomenon. Comparing the proposed method with the conventional cut-based approach shows a significant boost in the reduction factor for given signal efficiency.
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- 2021
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7. Directionality preservation of nuclear recoils in an emulsion detector for directional dark matter search
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Alexandrov, A., De Lellis, G., Di Crescenzo, A., Golovatiuk, A., and Tioukov, V.
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Astrophysics - Instrumentation and Methods for Astrophysics ,Physics - Instrumentation and Detectors - Abstract
Nuclear emulsion is a well-known detector type proposed also for the directional detection of dark matter. In this paper, we study one of the most important properties of direction-sensitive detectors: the preservation by nuclear recoils of the direction of impinging dark matter particles. For nuclear emulsion detectors, it is the first detailed study where a realistic nuclear recoil energy distribution with all possible recoil atom types is exploited. Moreover, for the first time we study the granularity effect on the emulsion detector directional performance. As well as we compare nuclear emulsion with other directional detectors: in terms of direction preservation nuclear emulsion outperforms the other detectors for WIMP masses above 100 GeV/c$^2$., Comment: Prepared for submission to JCAP
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- 2021
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8. Results and Perspectives from the First Two Years of Neutrino Physics at the LHC by the SND@LHC Experiment
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D. Abbaneo, S. Ahmad, R. Albanese, A. Alexandrov, F. Alicante, K. Androsov, A. Anokhina, T. Asada, C. Asawatangtrakuldee, M. A. Ayala Torres, C. Battilana, A. Bay, A. Bertocco, C. Betancourt, D. Bick, R. Biswas, A. Blanco Castro, V. Boccia, M. Bogomilov, D. Bonacorsi, W. M. Bonivento, P. Bordalo, A. Boyarsky, S. Buontempo, M. Campanelli, T. Camporesi, V. Canale, A. Castro, D. Centanni, F. Cerutti, M. Chernyavskiy, K.-Y. Choi, S. Cholak, F. Cindolo, M. Climescu, A. P. Conaboy, G. M. Dallavalle, D. Davino, P. T. de Bryas, G. De Lellis, M. De Magistris, A. De Roeck, A. De Rújula, M. De Serio, D. De Simone, A. Di Crescenzo, D. Di Ferdinando, R. Donà, O. Durhan, F. Fabbri, F. Fedotovs, M. Ferrillo, M. Ferro-Luzzi, R. A. Fini, A. Fiorillo, R. Fresa, W. Funk, F. M. Garay Walls, A. Golovatiuk, A. Golutvin, E. Graverini, A. M. Guler, V. Guliaeva, G. J. Haefeli, C. Hagner, J. C. Helo Herrera, E. van Herwijnen, P. Iengo, S. Ilieva, A. Infantino, A. Iuliano, R. Jacobsson, C. Kamiscioglu, A. M. Kauniskangas, E. Khalikov, S. H. Kim, Y. G. Kim, G. Klioutchnikov, M. Komatsu, N. Konovalova, S. Kuleshov, L. Krzempek, H. M. Lacker, O. Lantwin, F. Lasagni Manghi, A. Lauria, K. Y. Lee, K. S. Lee, S. Lo Meo, V. P. Loschiavo, S. Marcellini, A. Margiotta, A. Mascellani, F. Mei, A. Miano, A. Mikulenko, M. C. Montesi, F. L. Navarria, W. Nuntiyakul, S. Ogawa, N. Okateva, M. Ovchynnikov, G. Paggi, B. D. Park, A. Pastore, A. Perrotta, D. Podgrudkov, N. Polukhina, A. Prota, A. Quercia, S. Ramos, A. Reghunath, T. Roganova, F. Ronchetti, T. Rovelli, O. Ruchayskiy, T. Ruf, M. Sabate Gilarte, Z. Sadykov, M. Samoilov, V. Scalera, W. Schmidt-Parzefall, O. Schneider, G. Sekhniaidze, N. Serra, M. Shaposhnikov, V. Shevchenko, T. Shchedrina, L. Shchutska, H. Shibuya, S. Simone, G. P. Siroli, G. Sirri, G. Soares, J. Y. Sohn, O. J. Soto Sandoval, M. Spurio, N. Starkov, J. Steggemann, I. Timiryasov, V. Tioukov, F. Tramontano, C. Trippl, E. Ursov, A. Ustyuzhanin, G. Vankova-Kirilova, G. Vasquez, V. Verguilov, N. Viegas Guerreiro Leonardo, C. Vilela, C. Visone, R. Wanke, E. Yaman, Z. Yang, C. Yazici, C. S. Yoon, E. Zaffaroni, and J. Zamora Saa
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SND@LHC ,neutrino ,neutrino interactions ,electron neutrino ,muon neutrino ,tau neutrino ,Mathematics ,QA1-939 - Abstract
After rapid approval and installation, the SND@LHC Collaboration was able to gather data successfully in 2022 and 2023. Neutrino interactions from νμs originating at the LHC IP1 were observed. Since muons constitute the major background for neutrino interactions, the muon flux entering the acceptance was also measured. To improve the rejection power of the detector and to increase the fiducial volume, a third Veto plane was recently installed. The energy resolution of the calorimeter system was measured in a test beam. This will help with the identification of νe interactions that can be used to probe charm production in the pseudo-rapidity range of SND@LHC (7.2 < η < 8.4). Events with three outgoing muons have been observed and are being studied. With no vertex in the target, these events are very likely from muon trident production in the rock before the detector. Events with a vertex in the detector could be from trident production, photon conversion, or positron annihilation. To enhance SND@LHC’s physics case, an upgrade is planned for HL-LHC that will increase the statistics and reduce the systematics. The installation of a magnet will allow the separation of νμ from ν¯μ
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- 2024
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9. Sensitivity of the SHiP experiment to dark photons decaying to a pair of charged particles
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SHiP Collaboration, Ahdida, C., Akmete, A., Albanese, R., Alexandrov, A., Anokhina, A., Aoki, S., Arduini, G., Atkin, E., Azorskiy, N., Back, J. J., Bagulya, A., Santos, F. Baaltasar Dos, Baranov, A., Bardou, F., Barker, G. J., Battistin, M., Bauche, J., Bay, A., Bayliss, V., Bencivenni, G., Berdnikov, A. Y., Berdnikov, Y. A., Bertani, M., Betancourt, C., Bezshyiko, I., Bezshyyko, O., Bick, D., Bieschke, S., Blanco, A., Boehm, J., Bogomilov, M., Boiarska, I., Bondarenko, K., Bonivento, W. M., Borburgh, J., Boyarsky, A., Brenner, R., Breton, D., Büscher, V., Buonaura, A., Buontempo, S., Cadeddu, S., Calcaterra, A., Calviani, M., Campanelli, M., Casolino, M., Charitonidis, N., Chau, P., Chauveau, J., Chepurnov, A., Chernyavskiy, M., Choi, K. -Y., Chumakov, A., Ciambrone, P., Cicero, V., Congedo, L., Cornelis, K., Cristinziani, M., Crupano, A., Dallavalle, G. M., Datwyler, A., D'Ambrosio, N., D'Appollonio, G., de Asmundis, R., Saraiva, J. De Carvalho, De Lellis, G., de Magistris, M., De Roeck, A., De Serio, M., De Simone, D., Dedenko, L., Dergachev, P., Di Crescenzo, A., Di Giulio, L., Di Marco, N., Dib, C., Dijkstra, H., Dmitrenko, V., Dougherty, L. A., Dolmatov, A., Domenici, D., Donskov, S., Drohan, V., Dubreuil, A., Durhan, O., Ehlert, M., Elikkaya, E., Enik, T., Etenko, A., Fabbri, F., Fedin, O., Fedotovs, F., Felici, G., Ferrillo, M., Ferro-Luzzi, M., Filippov, K., Fini, R. A., Fonte, P., Franco, C., Fraser, M., Fresa, R., Froeschl, R., Fukuda, T., Galati, G., Gall, J., Gatignon, L., Gavrilov, G., Gentile, V., Goddard, B., Golinka-Bezshyyko, L., Golovatiuk, A., Golovtsov, V., Golubkov, D., Golutvin, A., Gorbounov, P., Gorbunov, D., Gorbunov, S., Gorkavenko, V., Gorshenkov, M., Grachev, V., Grandchamp, A. L., Graverini, E., Grenard, J. -L., Grenier, D., Grichine, V., Gruzinskii, N., Guler, A. M., Guz, Yu., Haefeli, G. J., Hagner, C., Hakobyan, H., Harris, I. W., van Herwijnen, E., Hessler, C., Hollnagel, A., Hosseini, B., Hushchyn, M., Iaselli, G., Iuliano, A., Jacobsson, R., Joković, D., Jonker, M., Kadenko, I., Kain, V., Kaiser, B., Kamiscioglu, C., Karpenkov, D., Kershaw, K., Khabibullin, M., Khalikov, E., Khaustov, G., Khoriauli, G., Khotyantsev, A., Kim, Y. G., Kim, V., Kitagawa, N., Ko, J. -W., Kodama, K., Kolesnikov, A., Kolev, D. I., Kolosov, V., Komatsu, M., Kono, A., Konovalova, N., Kormannshaus, S., Korol, I., Korol'ko, I., Korzenev, A., Kostyukhin, V., Platia, E. Koukovini, Kovalenko, S., Krasilnikova, I., Kudenko, Y., Kurbatov, E., Kurbatov, P., Kurochka, V., Kuznetsova, E., Lacker, H. M., Lamont, M., Lanfranchi, G., Lantwin, O., Lauria, A., Lee, K. S., Lee, K. Y., Lévy, J. -M., Loschiavo, V. P., Lopes, L., Sola, E. Lopez, Lyubovitskij, V., Maalmi, J., Magnan, A. -M., Maleev, V., Malinin, A., Manabe, Y., Managadze, A. K., Manfredi, M., Marsh, S., Marshall, A. M., Mefodev, A., Mermod, P., Miano, A., Mikado, S., Mikhaylov, Yu., Milstead, D. A., Mineev, O., Montanari, A., Montesi, M. C., Morishima, K., Movchan, S., Muttoni, Y., Naganawa, N., Nakamura, M., Nakano, T., Nasybulin, S., Ninin, P., Nishio, A., Novikov, A., Obinyakov, B., Ogawa, S., Okateva, N., Opitz, B., Osborne, J., Ovchynnikov, M., Owtscharenko, N., Owen, P. H., Pacholek, P., Paoloni, A., Park, B. D., Pastore, A., Patel, M., Pereyma, D., Perillo-Marcone, A., Petkov, G. L., Petridis, K., Petrov, A., Podgrudkov, D., Poliakov, V., Polukhina, N., Prieto, J. Prieto, Prokudin, M., Prota, A., Quercia, A., Rademakers, A., Rakai, A., Ratnikov, F., Rawlings, T., Redi, F., Ricciardi, S., Rinaldesi, M., Rodin, Volodymyr, Rodin, Viktor, Robbe, P., Cavalcante, A. B. Rodrigues, Roganova, T., Rokujo, H., Rosa, G., Rovelli, T., Ruchayskiy, O., Ruf, T., Samoylenko, V., Samsonov, V., Galan, F. Sanchez, Diaz, P. Santos, Ull, A. Sanz, Saputi, A., Sato, O., Savchenko, E. S., Schliwinski, J. S., Schmidt-Parzefall, W., Serra, N., Sgobba, S., Shadura, O., Shakin, A., Shaposhnikov, M., Shatalov, P., Shchedrina, T., Shchutska, L., Shevchenko, V., Shibuya, H., Shirobokov, S., Shustov, A., Silverstein, S. B., Simone, S., Simoniello, R., Skorokhvatov, M., Smirnov, S., Sohn, J. Y., Sokolenko, A., Solodko, E., Starkov, N., Stoel, L., Stramaglia, M. E., Sukhonos, D., Suzuki, Y., Takahashi, S., Tastet, J. L., Teterin, P., Naing, S. Than, Timiryasov, I., Tioukov, V., Tommasini, D., Torii, M., Tosi, N., Treille, D., Tsenov, R., Ulin, S., Ursov, E., Ustyuzhanin, A., Uteshev, Z., Uvarov, L., Vankova-Kirilova, G., Vannucci, F., Venturi, V., Vilchinski, S., Vincke, Heinz, Vincke, Helmut, Visone, C., Vlasik, K., Volkov, A., Voronkov, R., van Waasen, S., Wanke, R., Wertelaers, P., Williams, O., Woo, J. -K., Wurm, M., Xella, S., Yilmaz, D., Yilmazer, A. U., Yoon, C. S., Zaytsev, Yu., Zelenov, A., and Zimmerman, J.
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High Energy Physics - Experiment - Abstract
Dark photons are hypothetical massive vector particles that could mix with ordinary photons. The simplest theoretical model is fully characterised by only two parameters: the mass of the dark photon m$_{\gamma^{\mathrm{D}}}$ and its mixing parameter with the photon, $\varepsilon$. The sensitivity of the SHiP detector is reviewed for dark photons in the mass range between 0.002 and 10 GeV. Different production mechanisms are simulated, with the dark photons decaying to pairs of visible fermions, including both leptons and quarks. Exclusion contours are presented and compared with those of past experiments. The SHiP detector is expected to have a unique sensitivity for m$_{\gamma^{\mathrm{D}}}$ ranging between 0.8 and 3.3$^{+0.2}_{-0.5}$ GeV, and $\varepsilon^2$ ranging between $10^{-11}$ and $10^{-17}$.
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- 2020
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10. Deep learning for Directional Dark Matter search
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Golovatiuk, Artem, De Lellis, Giovanni, and Ustyuzhanin, Andrey
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Astrophysics - Instrumentation and Methods for Astrophysics - Abstract
We provide an algorithm for detection of possible dark matter particle interactions recorded within NEWSdm detector. The NEWSdm (Nuclear Emulsions for WIMP Search directional measure) is an underground Direct detection Dark Matter search experiment. The usage of recent developments in the nuclear emulsions allows probing new regions in the WIMP parameter space. The directional approach, which is the key feature of the NEWSdm experiment, gives the unique chance of overcoming the "neutrino floor". Deep Neural Networks were used for separation between potential DM signal and various classes of background. In this paper, we present the usage of deep 3D Convolutional Neural Networks to take into account the physical peculiarities of the datasets and report the achievement of the required $10^4$ background rejection power., Comment: 5 pages, 6 figures. This is a proceedings paper from the ACAT2019 conference: https://indico.cern.ch/event/708041
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- 2020
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11. SND@LHC
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SHiP Collaboration, Ahdida, C., Akmete, A., Albanese, R., Alexandrov, A., Andreini, M., Anokhina, A., Aoki, S., Arduini, G., Atkin, E., Azorskiy, N., Back, J. J., Bagulya, A., Santos, F. Baaltasar Dos, Baranov, A., Bardou, F., Barker, G. J., Battistin, M., Bauche, J., Bay, A., Bayliss, V., Bencivenni, G., Berdnikov, A. Y., Berdnikov, Y. A., Bertani, M., Bestmann, P., Betancourt, C., Bezshyiko, I., Bezshyyko, O., Bick, D., Bieschke, S., Blanco, A., Boehm, J., Bogomilov, M., Boiarska, I., Bondarenko, K., Bonivento, W. M., Borburgh, J., Boyarsky, A., Brenner, R., Breton, D., Buonocore, L. R., Büscher, V., Buonaura, A., Buontempo, S., Cadeddu, S., Calcaterra, A., Calviani, M., Campanelli, M., Canale, V., Casolino, M., Cerutti, F., Charitonidis, N., Chau, P., Chauveau, J., Chepurnov, A., Chernyavskiy, M., Choi, K. -Y., Chumakov, A., Ciambrone, P., Cicero, V., Congedo, L., Cornelis, K., Cristinziani, M., Crupano, A., Dallavalle, G. M., Datwyler, A., D'Ambrosio, N., D'Appollonio, G., de Asmundis, R., D'Archiac, P. T. De Bryas Dexmiers, Saraiva, J. De Carvalho, De Lellis, G., de Magistris, M., De Roeck, A., De Serio, M., De Simone, D., Dedenko, L., Dergachev, P., Di Crescenzo, A., Di Giulio, L., Di Marco, N., Dib, C., Dijkstra, H., Dmitrenko, V., Dmitrievskiy, S., Dougherty, L. A., Dolmatov, A., Domenici, D., Donskov, S., Drohan, V., Dubreuil, A., Durhan, O., Ehlert, M., Elikkaya, E., Enik, T., Etenko, A., Fabbri, F., Fedin, O., Fedotovs, F., Felici, G., Ferrillo, M., Ferro-Luzzi, M., Filippov, K., Fini, R. A., Fonte, P., Franco, C., Fraser, M., Fresa, R., Froeschl, R., Fukuda, T., Galati, G., Gall, J., Gatignon, L., Gavrilov, G., Gentile, V., Goddard, B., Golinka-Bezshyyko, L., Golovatiuk, A., Golubkov, D., Golutvin, A., Gorbounov, P., Gorbunov, D., Gorbunov, S., Gorkavenko, V., Gorshenkov, M., Grachev, V., Grandchamp, A. L., Graverini, E., Grenard, J. -L., Grenier, D., Grichine, V., Gruzinskii, N., Guler, A. M., Guz, Yu., Haefeli, G. J., Hagner, C., Hakobyan, H., Harris, I. W., van Herwijnen, E., Hessler, C., Hollnagel, A., Hosseini, B., Hushchyn, M., Iaselli, G., Iengo, P., Iuliano, A., Jacobsson, R., Joković, D., Jonker, M., Kadenko, I., Kain, V., Kaiser, B., Kamiscioglu, C., Karpenkov, D., Kershaw, K., Khabibullin, M., Khalikov, E., Khaustov, G., Khoriauli, G., Khotyantsev, A., Kim, Y. G., Kim, V., Kitagawa, N., Ko, J. -W., Kodama, K., Kolesnikov, A., Kolev, D. I., Kolosov, V., Komatsu, M., Kono, A., Konovalova, N., Kormannshaus, S., Korol, I., Korol'ko, I., Korzenev, A., Kostyukhin, V., Platia, E. Koukovini, Kovalenko, S., Krasilnikova, I., Kudenko, Y., Kurbatov, E., Kurbatov, P., Kurochka, V., Kuznetsova, E., Lacker, H. M., Lamont, M., Lanfranchi, G., Lantwin, O., Lauria, A., Lee, K. S., Lee, K. Y., Lévy, J. -M., Loschiavo, V. P., Lopes, L., Sola, E. Lopez, Lyubovitskij, V., Maalmi, J., Magnan, A., Maleev, V., Malinin, A., Manabe, Y., Managadze, A. K., Manfredi, M., Marsh, S., Marshall, A. M., Mefodev, A., Mermod, P., Miano, A., Mikado, S., Mikhaylov, Yu., Milstead, D. A., Mineev, O., Montanari, A., Montesi, M. C., Morishima, K., Movchan, S., Muttoni, Y., Naganawa, N., Nasybulin, S., Ninin, P., Nishio, A., Novikov, A., Obinyakov, B., Ogawa, S., Okateva, N., Opitz, B., Osborne, J., Ovchynnikov, M., Owtscharenko, N., Owen, P. H., Pacholek, P., Paoloni, A., Park, B. D., Passeggio, G., Pastore, A., Patel, M., Pereyma, D., Perillo-Marcone, A., Petkov, G. L., Petridis, K., Petrov, A., Podgrudkov, D., Poliakov, V., Polukhina, N., Prieto, J. Prieto, Prokudin, M., Prota, A., Quercia, A., Rademakers, A., Rakai, A., Ratnikov, F., Rawlings, T., Redi, F., Ricciardi, S., Rinaldesi, M., Rodin, Volodymyr, Rodin, Viktor, Robbe, P., Cavalcante, A. B. Rodrigues, Roganova, T., Rokujo, H., Rosa, G., Rovelli, T., Ruchayskiy, O., Ruf, T., Gilarte, M. Sabate, Samoylenko, V., Samsonov, V., Galan, F. Sanchez, Diaz, P. Santos, Ull, A. Sanz, Saputi, A., Savchenko, E. S., Schliwinski, J. S., Schmidt-Parzefall, W., Schneider, O., Sekhniaidze, G., Serra, N., Sgobba, S., Shadura, O., Shakin, A., Shaposhnikov, M., Shatalov, P., Shchedrina, T., Shchutska, L., Shevchenko, V., Shibuya, H., Shihora, L., Shirobokov, S., Shustov, A., Silverstein, S. B., Simone, S., Simoniello, R., Skorokhvatov, M., Smirnov, S., Sohn, J. Y., Sokolenko, A., Solodko, E., Starkov, N., Stoel, L., Stramaglia, M. E., Strekalina, D., Sukhonos, D., Suzuki, Y., Takahashi, S., Tastet, J. L., Teterin, P., Naing, S. Than, Timiryasov, I., Tioukov, V., Tommasini, D., Torii, M., Tosi, N., Tramontano, F., Treille, D., Tsenov, R., Ulin, S., Ursov, E., Ustyuzhanin, A., Uteshev, Z., Vankova-Kirilova, G., Vannucci, F., Vendeuvre, C., Venturi, V., Vilchinski, S., Vincke, Heinz, Vincke, Helmut, Visone, C., Vlasik, K., Volkov, A., Voronkov, R., van Waasen, S., Wanke, R., Wertelaers, P., Williams, O., Woo, J. -K., Wurm, M., Xella, S., Yilmaz, D., Yilmazer, A. U., Yoon, C. S., Zaytsev, Yu., and Zimmerman, J.
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Physics - Instrumentation and Detectors ,High Energy Physics - Experiment - Abstract
We propose to build and operate a detector that, for the first time, will measure the process $pp\to\nu X$ at the LHC and search for feebly interacting particles (FIPs) in an unexplored domain. The TI18 tunnel has been identified as a suitable site to perform these measurements due to very low machine-induced background. The detector will be off-axis with respect to the ATLAS interaction point (IP1) and, given the pseudo-rapidity range accessible, the corresponding neutrinos will mostly come from charm decays: the proposed experiment will thus make the first test of the heavy flavour production in a pseudo-rapidity range that is not accessible by the current LHC detectors. In order to efficiently reconstruct neutrino interactions and identify their flavour, the detector will combine in the target region nuclear emulsion technology with scintillating fibre tracking layers and it will adopt a muon identification system based on scintillating bars that will also play the role of a hadronic calorimeter. The time of flight measurement will be achieved thanks to a dedicated timing detector. The detector will be a small-scale prototype of the scattering and neutrino detector (SND) of the SHiP experiment: the operation of this detector will provide an important test of the neutrino reconstruction in a high occupancy environment., Comment: Letter of Intent
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- 2020
12. Deep Learning for direct Dark Matter search with nuclear emulsions
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Golovatiuk, Artem, Ustyuzhanin, Andrey, Alexandrov, Andrey, and De Lellis, Giovanni
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- 2022
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13. The SHiP experiment at the proposed CERN SPS Beam Dump Facility
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C. Ahdida, A. Akmete, R. Albanese, J. Alt, A. Alexandrov, A. Anokhina, S. Aoki, G. Arduini, E. Atkin, N. Azorskiy, J. J. Back, A. Bagulya, F. Baaltasar Dos Santos, A. Baranov, F. Bardou, G. J. Barker, M. Battistin, J. Bauche, A. Bay, V. Bayliss, A. Y. Berdnikov, Y. A. Berdnikov, C. Betancourt, I. Bezshyiko, O. Bezshyyko, D. Bick, S. Bieschke, A. Blanco, J. Boehm, M. Bogomilov, I. Boiarska, K. Bondarenko, W. M. Bonivento, J. Borburgh, A. Boyarsky, R. Brenner, D. Breton, A. Brignoli, V. Büscher, A. Buonaura, S. Buontempo, S. Cadeddu, M. Calviani, M. Campanelli, M. Casolino, N. Charitonidis, P. Chau, J. Chauveau, A. Chepurnov, M. Chernyavskiy, K.-Y. Choi, A. Chumakov, M. Climescu, A. Conaboy, L. Congedo, K. Cornelis, M. Cristinziani, A. Crupano, G. M. Dallavalle, A. Datwyler, N. D’Ambrosio, G. D’Appollonio, R. de Asmundis, J. De Carvalho Saraiva, G. De Lellis, M. de Magistris, A. De Roeck, M. De Serio, D. De Simone, L. Dedenko, P. Dergachev, A. Di Crescenzo, L. Di Giulio, C. Dib, H. Dijkstra, V. Dmitrenko, L. A. Dougherty, A. Dolmatov, S. Donskov, V. Drohan, A. Dubreuil, O. Durhan, M. Ehlert, E. Elikkaya, T. Enik, A. Etenko, O. Fedin, F. Fedotovs, M. Ferrillo, M. Ferro-Luzzi, K. Filippov, R. A. Fini, H. Fischer, P. Fonte, C. Franco, M. Fraser, R. Fresa, R. Froeschl, T. Fukuda, G. Galati, J. Gall, L. Gatignon, G. Gavrilov, V. Gentile, B. Goddard, L. Golinka-Bezshyyko, A. Golovatiuk, V. Golovtsov, D. Golubkov, A. Golutvin, P. Gorbounov, D. Gorbunov, S. Gorbunov, V. Gorkavenko, M. Gorshenkov, V. Grachev, A. L. Grandchamp, E. Graverini, J.-L. Grenard, D. Grenier, V. Grichine, N. Gruzinskii, A. M. Guler, Yu. Guz, G. J. Haefeli, C. Hagner, H. Hakobyan, I. W. Harris, E. van Herwijnen, C. Hessler, A. Hollnagel, B. Hosseini, M. Hushchyn, G. Iaselli, A. Iuliano, R. Jacobsson, D. Joković, M. Jonker, I. Kadenko, V. Kain, B. Kaiser, C. Kamiscioglu, D. Karpenkov, K. Kershaw, M. Khabibullin, E. Khalikov, G. Khaustov, G. Khoriauli, A. Khotyantsev, Y. G. Kim, V. Kim, N. Kitagawa, J.-W. Ko, K. Kodama, A. Kolesnikov, D. I. Kolev, V. Kolosov, M. Komatsu, A. Kono, N. Konovalova, S. Kormannshaus, I. Korol, I. Korol’ko, A. Korzenev, E. Koukovini Platia, S. Kovalenko, I. Krasilnikova, Y. Kudenko, E. Kurbatov, P. Kurbatov, V. Kurochka, E. Kuznetsova, H. M. Lacker, M. Lamont, O. Lantwin, A. Lauria, K. S. Lee, K. Y. Lee, N. Leonardo, J.-M. Lévy, V. P. Loschiavo, L. Lopes, E. Lopez Sola, F. Lyons, V. Lyubovitskij, J. Maalmi, A.-M. Magnan, V. Maleev, A. Malinin, Y. Manabe, A. K. Managadze, M. Manfredi, S. Marsh, A. M. Marshall, A. Mefodev, P. Mermod, A. Miano, S. Mikado, Yu. Mikhaylov, A. Mikulenko, D. A. Milstead, O. Mineev, M. C. Montesi, K. Morishima, S. Movchan, Y. Muttoni, N. Naganawa, M. Nakamura, T. Nakano, S. Nasybulin, P. Ninin, A. Nishio, B. Obinyakov, S. Ogawa, N. Okateva, J. Osborne, M. Ovchynnikov, N. Owtscharenko, P. H. Owen, P. Pacholek, B. D. Park, A. Pastore, M. Patel, D. Pereyma, A. Perillo-Marcone, G. L. Petkov, K. Petridis, A. Petrov, D. Podgrudkov, V. Poliakov, N. Polukhina, J. Prieto Prieto, M. Prokudin, A. Prota, A. Quercia, A. Rademakers, A. Rakai, F. Ratnikov, T. Rawlings, F. Redi, A. Reghunath, S. Ricciardi, M. Rinaldesi, Volodymyr Rodin, Viktor Rodin, P. Robbe, A. B. Rodrigues Cavalcante, T. Roganova, H. Rokujo, G. Rosa, O. Ruchayskiy, T. Ruf, V. Samoylenko, V. Samsonov, F. Sanchez Galan, P. Santos Diaz, A. Sanz Ull, O. Sato, E. S. Savchenko, J. S. Schliwinski, W. Schmidt-Parzefall, M. Schumann, N. Serra, S. Sgobba, O. Shadura, A. Shakin, M. Shaposhnikov, P. Shatalov, T. Shchedrina, L. Shchutska, V. Shevchenko, H. Shibuya, L. Shihora, S. Shirobokov, A. Shustov, S. B. Silverstein, S. Simone, R. Simoniello, M. Skorokhvatov, S. Smirnov, G. Soares, J. Y. Sohn, A. Sokolenko, E. Solodko, N. Starkov, L. Stoel, M. E. Stramaglia, D. Sukhonos, Y. Suzuki, S. Takahashi, J. L. Tastet, P. Teterin, S. Than Naing, I. Timiryasov, V. Tioukov, D. Tommasini, M. Torii, D. Treille, R. Tsenov, S. Ulin, E. Ursov, A. Ustyuzhanin, Z. Uteshev, L. Uvarov, G. Vankova-Kirilova, F. Vannucci, P. Venkova, V. Venturi, I. Vidulin, S. Vilchinski, Heinz Vincke, Helmut Vincke, C. Visone, K. Vlasik, A. Volkov, R. Voronkov, S. van Waasen, R. Wanke, P. Wertelaers, O. Williams, J.-K. Woo, M. Wurm, S. Xella, D. Yilmaz, A. U. Yilmazer, C. S. Yoon, Yu. Zaytsev, A. Zelenov, J. Zimmerman, and SHiP Collaboration
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Astrophysics ,QB460-466 ,Nuclear and particle physics. Atomic energy. Radioactivity ,QC770-798 - Abstract
Abstract The Search for Hidden Particles (SHiP) Collaboration has proposed a general-purpose experimental facility operating in beam-dump mode at the CERN SPS accelerator to search for light, feebly interacting particles. In the baseline configuration, the SHiP experiment incorporates two complementary detectors. The upstream detector is designed for recoil signatures of light dark matter (LDM) scattering and for neutrino physics, in particular with tau neutrinos. It consists of a spectrometer magnet housing a layered detector system with high-density LDM/neutrino target plates, emulsion-film technology and electronic high-precision tracking. The total detector target mass amounts to about eight tonnes. The downstream detector system aims at measuring visible decays of feebly interacting particles to both fully reconstructed final states and to partially reconstructed final states with neutrinos, in a nearly background-free environment. The detector consists of a 50 $$\mathrm { \,m}$$ m long decay volume under vacuum followed by a spectrometer and particle identification system with a rectangular acceptance of 5 m in width and 10 m in height. Using the high-intensity beam of 400 $$\,\mathrm {GeV}$$ GeV protons, the experiment aims at profiting from the $$4\times 10^{19}$$ 4 × 10 19 protons per year that are currently unexploited at the SPS, over a period of 5–10 years. This allows probing dark photons, dark scalars and pseudo-scalars, and heavy neutral leptons with GeV-scale masses in the direct searches at sensitivities that largely exceed those of existing and projected experiments. The sensitivity to light dark matter through scattering reaches well below the dark matter relic density limits in the range from a few $${\mathrm {\,MeV\!/}c^2}$$ MeV / c 2 up to 100 MeV-scale masses, and it will be possible to study tau neutrino interactions with unprecedented statistics. This paper describes the SHiP experiment baseline setup and the detector systems, together with performance results from prototypes in test beams, as it was prepared for the 2020 Update of the European Strategy for Particle Physics. The expected detector performance from simulation is summarised at the end.
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- 2022
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14. Sensitivity of the SHiP experiment to dark photons decaying to a pair of charged particles
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SHiP Collaboration, C. Ahdida, A. Akmete, R. Albanese, A. Alexandrov, A. Anokhina, S. Aoki, G. Arduini, E. Atkin, N. Azorskiy, J. J. Back, A. Bagulya, F. Baaltasar Dos Santos, A. Baranov, F. Bardou, G. J. Barker, M. Battistin, J. Bauche, A. Bay, V. Bayliss, G. Bencivenni, A. Y. Berdnikov, Y. A. Berdnikov, M. Bertani, C. Betancourt, I. Bezshyiko, O. Bezshyyko, D. Bick, S. Bieschke, A. Blanco, J. Boehm, M. Bogomilov, I. Boiarska, K. Bondarenko, W. M. Bonivento, J. Borburgh, A. Boyarsky, R. Brenner, D. Breton, V. Büscher, A. Buonaura, S. Buontempo, S. Cadeddu, A. Calcaterra, M. Calviani, M. Campanelli, M. Casolino, N. Charitonidis, P. Chau, J. Chauveau, A. Chepurnov, M. Chernyavskiy, K.-Y. Choi, A. Chumakov, P. Ciambrone, V. Cicero, L. Congedo, K. Cornelis, M. Cristinziani, A. Crupano, G. M. Dallavalle, A. Datwyler, N. D’Ambrosio, G. D’Appollonio, R. de Asmundis, J. De Carvalho Saraiva, G. De Lellis, M. de Magistris, A. De Roeck, M. De Serio, D. De Simone, L. Dedenko, P. Dergachev, A. Di Crescenzo, L. Di Giulio, N. Di Marco, C. Dib, H. Dijkstra, V. Dmitrenko, L. A. Dougherty, A. Dolmatov, D. Domenici, S. Donskov, V. Drohan, A. Dubreuil, O. Durhan, M. Ehlert, E. Elikkaya, T. Enik, A. Etenko, F. Fabbri, O. Fedin, F. Fedotovs, G. Felici, M. Ferrillo, M. Ferro-Luzzi, K. Filippov, R. A. Fini, P. Fonte, C. Franco, M. Fraser, R. Fresa, R. Froeschl, T. Fukuda, G. Galati, J. Gall, L. Gatignon, G. Gavrilov, V. Gentile, B. Goddard, L. Golinka-Bezshyyko, A. Golovatiuk, V. Golovtsov, D. Golubkov, A. Golutvin, P. Gorbounov, D. Gorbunov, S. Gorbunov, V. Gorkavenko, M. Gorshenkov, V. Grachev, A. L. Grandchamp, E. Graverini, J.-L. Grenard, D. Grenier, V. Grichine, N. Gruzinskii, A. M. Guler, Yu. Guz, G. J. Haefeli, C. Hagner, H. Hakobyan, I. W. Harris, E. van Herwijnen, C. Hessler, A. Hollnagel, B. Hosseini, M. Hushchyn, G. Iaselli, A. Iuliano, R. Jacobsson, D. Joković, M. Jonker, I. Kadenko, V. Kain, B. Kaiser, C. Kamiscioglu, D. Karpenkov, K. Kershaw, M. Khabibullin, E. Khalikov, G. Khaustov, G. Khoriauli, A. Khotyantsev, Y. G. Kim, V. Kim, N. Kitagawa, J.-W. Ko, K. Kodama, A. Kolesnikov, D. I. Kolev, V. Kolosov, M. Komatsu, A. Kono, N. Konovalova, S. Kormannshaus, I. Korol, I. Korol’ko, A. Korzenev, V. Kostyukhin, E. Koukovini Platia, S. Kovalenko, I. Krasilnikova, Y. Kudenko, E. Kurbatov, P. Kurbatov, V. Kurochka, E. Kuznetsova, H. M. Lacker, M. Lamont, G. Lanfranchi, O. Lantwin, A. Lauria, K. S. Lee, K. Y. Lee, N. Leonardo, J.-M. Lévy, V. P. Loschiavo, L. Lopes, E. Lopez Sola, V. Lyubovitskij, J. Maalmi, A.-M. Magnan, V. Maleev, A. Malinin, Y. Manabe, A. K. Managadze, M. Manfredi, S. Marsh, A. M. Marshall, A. Mefodev, P. Mermod, A. Miano, S. Mikado, Yu. Mikhaylov, D. A. Milstead, O. Mineev, A. Montanari, M. C. Montesi, K. Morishima, S. Movchan, Y. Muttoni, N. Naganawa, M. Nakamura, T. Nakano, S. Nasybulin, P. Ninin, A. Nishio, B. Obinyakov, S. Ogawa, N. Okateva, B. Opitz, J. Osborne, M. Ovchynnikov, N. Owtscharenko, P. H. Owen, P. Pacholek, A. Paoloni, B. D. Park, A. Pastore, M. Patel, D. Pereyma, A. Perillo-Marcone, G. L. Petkov, K. Petridis, A. Petrov, D. Podgrudkov, V. Poliakov, N. Polukhina, J. Prieto Prieto, M. Prokudin, A. Prota, A. Quercia, A. Rademakers, A. Rakai, F. Ratnikov, T. Rawlings, F. Redi, S. Ricciardi, M. Rinaldesi, Volodymyr Rodin, Viktor Rodin, P. Robbe, A. B. Rodrigues Cavalcante, T. Roganova, H. Rokujo, G. Rosa, T. Rovelli, O. Ruchayskiy, T. Ruf, V. Samoylenko, V. Samsonov, F. Sanchez Galan, P. Santos Diaz, A. Sanz Ull, A. Saputi, O. Sato, E. S. Savchenko, J. S. Schliwinski, W. Schmidt-Parzefall, N. Serra, S. Sgobba, O. Shadura, A. Shakin, M. Shaposhnikov, P. Shatalov, T. Shchedrina, L. Shchutska, V. Shevchenko, H. Shibuya, S. Shirobokov, A. Shustov, S. B. Silverstein, S. Simone, R. Simoniello, M. Skorokhvatov, S. Smirnov, G. Soares, J. Y. Sohn, A. Sokolenko, E. Solodko, N. Starkov, L. Stoel, M. E. Stramaglia, D. Sukhonos, Y. Suzuki, S. Takahashi, J. L. Tastet, P. Teterin, S. Than Naing, I. Timiryasov, V. Tioukov, D. Tommasini, M. Torii, N. Tosi, D. Treille, R. Tsenov, S. Ulin, E. Ursov, A. Ustyuzhanin, Z. Uteshev, L. Uvarov, G. Vankova-Kirilova, F. Vannucci, V. Venturi, I. Vidulin, S. Vilchinski, Heinz Vincke, Helmut Vincke, C. Visone, K. Vlasik, A. Volkov, R. Voronkov, S. van Waasen, R. Wanke, P. Wertelaers, O. Williams, J.-K. Woo, M. Wurm, S. Xella, D. Yilmaz, A. U. Yilmazer, C. S. Yoon, Yu. Zaytsev, A. Zelenov, and J. Zimmerman
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Astrophysics ,QB460-466 ,Nuclear and particle physics. Atomic energy. Radioactivity ,QC770-798 - Abstract
Abstract Dark photons are hypothetical massive vector particles that could mix with ordinary photons. The simplest theoretical model is fully characterised by only two parameters: the mass of the dark photon m $$_{\gamma ^{\mathrm {D}}}$$ γ D and its mixing parameter with the photon, $$\varepsilon $$ ε . The sensitivity of the SHiP detector is reviewed for dark photons in the mass range between 0.002 and 10 GeV. Different production mechanisms are simulated, with the dark photons decaying to pairs of visible fermions, including both leptons and quarks. Exclusion contours are presented and compared with those of past experiments. The SHiP detector is expected to have a unique sensitivity for m $$_{\gamma ^{\mathrm {D}}}$$ γ D ranging between 0.8 and 3.3 $$^{+0.2}_{-0.5}$$ - 0.5 + 0.2 GeV, and $$\varepsilon ^2$$ ε 2 ranging between $$10^{-11}$$ 10 - 11 and $$10^{-17}$$ 10 - 17 .
- Published
- 2021
- Full Text
- View/download PDF
15. Sensitivity of the SHiP experiment to light dark matter
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The SHiP collaboration, C. Ahdida, A. Akmete, R. Albanese, A. Alexandrov, A. Anokhina, S. Aoki, G. Arduini, E. Atkin, N. Azorskiy, J. J. Back, A. Bagulya, F. Baaltasar Dos Santos, A. Baranov, F. Bardou, G. J. Barker, M. Battistin, J. Bauche, A. Bay, V. Bayliss, G. Bencivenni, A. Y. Berdnikov, Y. A. Berdnikov, M. Bertani, C. Betancourt, I. Bezshyiko, O. Bezshyyko, D. Bick, S. Bieschke, A. Blanco, J. Boehm, M. Bogomilov, I. Boiarska, K. Bondarenko, W. M. Bonivento, J. Borburgh, A. Boyarsky, R. Brenner, D. Breton, V. Büscher, A. Buonaura, L. Buonocore, S. Buontempo, S. Cadeddu, A. Calcaterra, M. Calviani, M. Campanelli, M. Casolino, N. Charitonidis, P. Chau, J. Chauveau, A. Chepurnov, M. Chernyavskiy, K.-Y. Choi, A. Chumakov, P. Ciambrone, V. Cicero, L. Congedo, K. Cornelis, M. Cristinziani, A. Crupano, G. M. Dallavalle, A. Datwyler, N. D’Ambrosio, G. D’Appollonio, R. de Asmundis, J. De Carvalho Saraiva, G. De Lellis, M. de Magistris, A. De Roeck, M. De Serio, D. De Simone, L. Dedenko, P. Dergachev, A. Di Crescenzo, L. Di Giulio, N. Di Marco, C. Dib, H. Dijkstra, V. Dmitrenko, L. A. Dougherty, A. Dolmatov, D. Domenici, S. Donskov, V. Drohan, A. Dubreuil, O. Durhan, M. Ehlert, E. Elikkaya, T. Enik, A. Etenko, F. Fabbri, O. Fedin, F. Fedotovs, G. Felici, M. Ferrillo, M. Ferro-Luzzi, K. Filippov, R. A. Fini, P. Fonte, C. Franco, M. Fraser, R. Fresa, R. Froeschl, C. Frugiuele, T. Fukuda, G. Galati, J. Gall, L. Gatignon, G. Gavrilov, V. Gentile, B. Goddard, L. Golinka-Bezshyyko, A. Golovatiuk, V. Golovtsov, D. Golubkov, A. Golutvin, P. Gorbounov, D. Gorbunov, S. Gorbunov, V. Gorkavenko, M. Gorshenkov, V. Grachev, A. L. Grandchamp, E. Graverini, J.-L. Grenard, D. Grenier, V. Grichine, N. Gruzinskii, A. M. Guler, Yu. Guz, G. J. Haefeli, C. Hagner, H. Hakobyan, I. W. Harris, E. van Herwijnen, C. Hessler, A. Hollnagel, B. Hosseini, M. Hushchyn, G. Iaselli, A. Iuliano, R. Jacobsson, D. Joković, M. Jonker, I. Kadenko, V. Kain, B. Kaiser, C. Kamiscioglu, D. Karpenkov, K. Kershaw, M. Khabibullin, E. Khalikov, G. Khaustov, G. Khoriauli, A. Khotyantsev, Y. G. Kim, V. Kim, N. Kitagawa, J.-W. Ko, K. Kodama, A. Kolesnikov, D. I. Kolev, V. Kolosov, M. Komatsu, A. Kono, N. Konovalova, S. Kormannshaus, I. Korol, I. Korol’ko, A. Korzenev, V. Kostyukhin, E. Koukovini Platia, S. Kovalenko, I. Krasilnikova, Y. Kudenko, E. Kurbatov, P. Kurbatov, V. Kurochka, E. Kuznetsova, H. M. Lacker, M. Lamont, G. Lanfranchi, O. Lantwin, A. Lauria, K. S. Lee, K. Y. Lee, J.-M. Lévy, V. P. Loschiavo, L. Lopes, E. Lopez Sola, V. Lyubovitskij, J. Maalmi, A. Magnan, V. Maleev, A. Malinin, F. Maltoni, Y. Manabe, A. K. Managadze, M. Manfredi, S. Marsh, A. M. Marshall, O. Mattelaer, A. Mefodev, P. Mermod, A. Miano, S. Mikado, Yu. Mikhaylov, D. A. Milstead, O. Mineev, A. Montanari, M. C. Montesi, K. Morishima, S. Movchan, Y. Muttoni, N. Naganawa, M. Nakamura, T. Nakano, S. Nasybulin, P. Ninin, A. Nishio, A. Novikov, B. Obinyakov, S. Ogawa, N. Okateva, B. Opitz, J. Osborne, M. Ovchynnikov, N. Owtscharenko, P. H. Owen, P. Pacholek, A. Paoloni, B. D. Park, A. Pastore, M. Patel, D. Pereyma, A. Perillo-Marcone, G. L. Petkov, K. Petridis, A. Petrov, D. Podgrudkov, V. Poliakov, N. Polukhina, J. Prieto Prieto, M. Prokudin, A. Prota, A. Quercia, A. Rademakers, A. Rakai, F. Ratnikov, T. Rawlings, F. Redi, S. Ricciardi, M. Rinaldesi, Volodymyr Rodin, Viktor Rodin, P. Robbe, A. B. Rodrigues Cavalcante, T. Roganova, H. Rokujo, G. Rosa, T. Rovelli, O. Ruchayskiy, T. Ruf, V. Samoylenko, V. Samsonov, F. Sanchez Galan, P. Santos Diaz, A. Sanz Ull, A. Saputi, O. Sato, E. S. Savchenko, J. S. Schliwinski, W. Schmidt-Parzefall, N. Serra, S. Sgobba, O. Shadura, A. Shakin, M. Shaposhnikov, P. Shatalov, T. Shchedrina, L. Shchutska, V. Shevchenko, H. Shibuya, S. Shirobokov, A. Shustov, S. B. Silverstein, S. Simone, R. Simoniello, M. Skorokhvatov, S. Smirnov, J. Y. Sohn, A. Sokolenko, E. Solodko, N. Starkov, L. Stoel, M. E. Stramaglia, D. Sukhonos, Y. Suzuki, S. Takahashi, J. L. Tastet, P. Teterin, S. Than Naing, I. Timiryasov, V. Tioukov, D. Tommasini, M. Torii, N. Tosi, F. Tramontano, D. Treille, R. Tsenov, S. Ulin, E. Ursov, A. Ustyuzhanin, Z. Uteshev, L. Uvarov, G. Vankova-Kirilova, F. Vannucci, V. Venturi, S. Vilchinski, Heinz Vincke, Helmut Vincke, C. Visone, K. Vlasik, A. Volkov, R. Voronkov, S. van Waasen, R. Wanke, P. Wertelaers, O. Williams, J.-K. Woo, M. Wurm, S. Xella, D. Yilmaz, A. U. Yilmazer, C. S. Yoon, Yu. Zaytsev, A. Zelenov, and J. Zimmerman
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Beyond Standard Model ,Dark matter ,Fixed target experiments ,Nuclear and particle physics. Atomic energy. Radioactivity ,QC770-798 - Abstract
Abstract Dark matter is a well-established theoretical addition to the Standard Model supported by many observations in modern astrophysics and cosmology. In this context, the existence of weakly interacting massive particles represents an appealing solution to the observed thermal relic in the Universe. Indeed, a large experimental campaign is ongoing for the detection of such particles in the sub-GeV mass range. Adopting the benchmark scenario for light dark matter particles produced in the decay of a dark photon, with α D = 0.1 and m A′ = 3m χ , we study the potential of the SHiP experiment to detect such elusive particles through its Scattering and Neutrino detector (SND). In its 5-years run, corresponding to 2 · 1020 protons on target from the CERN SPS, we find that SHiP will improve the current limits in the mass range for the dark matter from about 1 MeV to 300 MeV. In particular, we show that SHiP will probe the thermal target for Majorana candidates in most of this mass window and even reach the Pseudo-Dirac thermal relic.
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- 2021
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16. The SHiP experiment at the proposed CERN SPS Beam Dump Facility
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Ahdida, C., Akmete, A., Albanese, R., Alt, J., Alexandrov, A., Anokhina, A., Aoki, S., Arduini, G., Atkin, E., Azorskiy, N., Back, J. J., Bagulya, A., Baaltasar Dos Santos, F., Baranov, A., Bardou, F., Barker, G. J., Battistin, M., Bauche, J., Bay, A., Bayliss, V., Berdnikov, A. Y., Berdnikov, Y. A., Betancourt, C., Bezshyiko, I., Bezshyyko, O., Bick, D., Bieschke, S., Blanco, A., Boehm, J., Bogomilov, M., Boiarska, I., Bondarenko, K., Bonivento, W. M., Borburgh, J., Boyarsky, A., Brenner, R., Breton, D., Brignoli, A., Büscher, V., Buonaura, A., Buontempo, S., Cadeddu, S., Calviani, M., Campanelli, M., Casolino, M., Charitonidis, N., Chau, P., Chauveau, J., Chepurnov, A., Chernyavskiy, M., Choi, K.-Y., Chumakov, A., Climescu, M., Conaboy, A., Congedo, L., Cornelis, K., Cristinziani, M., Crupano, A., Dallavalle, G. M., Datwyler, A., D’Ambrosio, N., D’Appollonio, G., de Asmundis, R., De Carvalho Saraiva, J., De Lellis, G., de Magistris, M., De Roeck, A., De Serio, M., De Simone, D., Dedenko, L., Dergachev, P., Di Crescenzo, A., Di Giulio, L., Dib, C., Dijkstra, H., Dmitrenko, V., Dougherty, L. A., Dolmatov, A., Donskov, S., Drohan, V., Dubreuil, A., Durhan, O., Ehlert, M., Elikkaya, E., Enik, T., Etenko, A., Fedin, O., Fedotovs, F., Ferrillo, M., Ferro-Luzzi, M., Filippov, K., Fini, R. A., Fischer, H., Fonte, P., Franco, C., Fraser, M., Fresa, R., Froeschl, R., Fukuda, T., Galati, G., Gall, J., Gatignon, L., Gavrilov, G., Gentile, V., Goddard, B., Golinka-Bezshyyko, L., Golovatiuk, A., Golovtsov, V., Golubkov, D., Golutvin, A., Gorbounov, P., Gorbunov, D., Gorbunov, S., Gorkavenko, V., Gorshenkov, M., Grachev, V., Grandchamp, A. L., Graverini, E., Grenard, J.-L., Grenier, D., Grichine, V., Gruzinskii, N., Guler, A. M., Guz, Yu., Haefeli, G. J., Hagner, C., Hakobyan, H., Harris, I. W., van Herwijnen, E., Hessler, C., Hollnagel, A., Hosseini, B., Hushchyn, M., Iaselli, G., Iuliano, A., Jacobsson, R., Joković, D., Jonker, M., Kadenko, I., Kain, V., Kaiser, B., Kamiscioglu, C., Karpenkov, D., Kershaw, K., Khabibullin, M., Khalikov, E., Khaustov, G., Khoriauli, G., Khotyantsev, A., Kim, Y. G., Kim, V., Kitagawa, N., Ko, J.-W., Kodama, K., Kolesnikov, A., Kolev, D. I., Kolosov, V., Komatsu, M., Kono, A., Konovalova, N., Kormannshaus, S., Korol, I., Korol’ko, I., Korzenev, A., Koukovini Platia, E., Kovalenko, S., Krasilnikova, I., Kudenko, Y., Kurbatov, E., Kurbatov, P., Kurochka, V., Kuznetsova, E., Lacker, H. M., Lamont, M., Lantwin, O., Lauria, A., Lee, K. S., Lee, K. Y., Leonardo, N., Lévy, J.-M., Loschiavo, V. P., Lopes, L., Lopez Sola, E., Lyons, F., Lyubovitskij, V., Maalmi, J., Magnan, A.-M., Maleev, V., Malinin, A., Manabe, Y., Managadze, A. K., Manfredi, M., Marsh, S., Marshall, A. M., Mefodev, A., Mermod, P., Miano, A., Mikado, S., Mikhaylov, Yu., Mikulenko, A., Milstead, D. A., Mineev, O., Montesi, M. C., Morishima, K., Movchan, S., Muttoni, Y., Naganawa, N., Nakamura, M., Nakano, T., Nasybulin, S., Ninin, P., Nishio, A., Obinyakov, B., Ogawa, S., Okateva, N., Osborne, J., Ovchynnikov, M., Owtscharenko, N., Owen, P. H., Pacholek, P., Park, B. D., Pastore, A., Patel, M., Pereyma, D., Perillo-Marcone, A., Petkov, G. L., Petridis, K., Petrov, A., Podgrudkov, D., Poliakov, V., Polukhina, N., Prieto Prieto, J., Prokudin, M., Prota, A., Quercia, A., Rademakers, A., Rakai, A., Ratnikov, F., Rawlings, T., Redi, F., Reghunath, A., Ricciardi, S., Rinaldesi, M., Rodin, Volodymyr, Rodin, Viktor, Robbe, P., Rodrigues Cavalcante, A. B., Roganova, T., Rokujo, H., Rosa, G., Ruchayskiy, O., Ruf, T., Samoylenko, V., Samsonov, V., Sanchez Galan, F., Santos Diaz, P., Sanz Ull, A., Sato, O., Savchenko, E. S., Schliwinski, J. S., Schmidt-Parzefall, W., Schumann, M., Serra, N., Sgobba, S., Shadura, O., Shakin, A., Shaposhnikov, M., Shatalov, P., Shchedrina, T., Shchutska, L., Shevchenko, V., Shibuya, H., Shihora, L., Shirobokov, S., Shustov, A., Silverstein, S. B., Simone, S., Simoniello, R., Skorokhvatov, M., Smirnov, S., Soares, G., Sohn, J. Y., Sokolenko, A., Solodko, E., Starkov, N., Stoel, L., Stramaglia, M. E., Sukhonos, D., Suzuki, Y., Takahashi, S., Tastet, J. L., Teterin, P., Than Naing, S., Timiryasov, I., Tioukov, V., Tommasini, D., Torii, M., Treille, D., Tsenov, R., Ulin, S., Ursov, E., Ustyuzhanin, A., Uteshev, Z., Uvarov, L., Vankova-Kirilova, G., Vannucci, F., Venkova, P., Venturi, V., Vidulin, I., Vilchinski, S., Vincke, Heinz, Vincke, Helmut, Visone, C., Vlasik, K., Volkov, A., Voronkov, R., van Waasen, S., Wanke, R., Wertelaers, P., Williams, O., Woo, J.-K., Wurm, M., Xella, S., Yilmaz, D., Yilmazer, A. U., Yoon, C. S., Zaytsev, Yu., Zelenov, A., and Zimmerman, J.
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- 2022
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17. Measurement of the muon flux from 400 GeV/c protons interacting in a thick molybdenum/tungsten target
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C. Ahdida, A. Akmete, R. Albanese, A. Alexandrov, A. Anokhina, S. Aoki, G. Arduini, E. Atkin, N. Azorskiy, J. J. Back, A. Bagulya, F. Baaltasar Dos Santos, A. Baranov, F. Bardou, G. J. Barker, M. Battistin, J. Bauche, A. Bay, V. Bayliss, G. Bencivenni, A. Y. Berdnikov, Y. A. Berdnikov, M. Bertani, C. Betancourt, I. Bezshyiko, O. Bezshyyko, D. Bick, S. Bieschke, A. Blanco, J. Boehm, M. Bogomilov, I. Boiarska, K. Bondarenko, W. M. Bonivento, J. Borburgh, A. Boyarsky, R. Brenner, D. Breton, V. Büscher, A. Buonaura, S. Buontempo, S. Cadeddu, A. Calcaterra, M. Calviani, M. Campanelli, M. Casolino, N. Charitonidis, P. Chau, J. Chauveau, A. Chepurnov, M. Chernyavskiy, K.-Y. Choi, A. Chumakov, P. Ciambrone, V. Cicero, L. Congedo, K. Cornelis, M. Cristinziani, A. Crupano, G. M. Dallavalle, A. Datwyler, N. D’Ambrosio, G. D’Appollonio, R. de Asmundis, J. De Carvalho Saraiva, G. De Lellis, M. de Magistris, A. De Roeck, M. De Serio, D. De Simone, L. Dedenko, P. Dergachev, A. Di Crescenzo, L. Di Giulio, N. Di Marco, C. Dib, H. Dijkstra, V. Dmitrenko, S. Dmitrievskiy, L. A. Dougherty, A. Dolmatov, D. Domenici, S. Donskov, V. Drohan, A. Dubreuil, O. Durhan, M. Ehlert, E. Elikkaya, T. Enik, A. Etenko, F. Fabbri, O. Fedin, F. Fedotovs, G. Felici, M. Ferrillo, M. Ferro-Luzzi, K. Filippov, R. A. Fini, P. Fonte, C. Franco, M. Fraser, R. Fresa, R. Froeschl, T. Fukuda, G. Galati, J. Gall, L. Gatignon, G. Gavrilov, V. Gentile, B. Goddard, L. Golinka-Bezshyyko, A. Golovatiuk, D. Golubkov, A. Golutvin, P. Gorbounov, D. Gorbunov, S. Gorbunov, V. Gorkavenko, M. Gorshenkov, V. Grachev, A. L. Grandchamp, E. Graverini, J.-L. Grenard, D. Grenier, V. Grichine, N. Gruzinskii, A. M. Guler, Yu. Guz, G. J. Haefeli, C. Hagner, H. Hakobyan, I. W. Harris, E. van Herwijnen, C. Hessler, A. Hollnagel, B. Hosseini, M. Hushchyn, G. Iaselli, A. Iuliano, R. Jacobsson, D. Joković, M. Jonker, I. Kadenko, V. Kain, B. Kaiser, C. Kamiscioglu, D. Karpenkov, K. Kershaw, M. Khabibullin, E. Khalikov, G. Khaustov, G. Khoriauli, A. Khotyantsev, Y. G. Kim, V. Kim, N. Kitagawa, J.-W. Ko, K. Kodama, A. Kolesnikov, D. I. Kolev, V. Kolosov, M. Komatsu, A. Kono, N. Konovalova, S. Kormannshaus, I. Korol, I. Korol’ko, A. Korzenev, V. Kostyukhin, E. Koukovini Platia, S. Kovalenko, I. Krasilnikova, Y. Kudenko, E. Kurbatov, P. Kurbatov, V. Kurochka, E. Kuznetsova, H. M. Lacker, M. Lamont, G. Lanfranchi, O. Lantwin, A. Lauria, K. S. Lee, K. Y. Lee, J.-M. Lévy, V. P. Loschiavo, L. Lopes, E. Lopez Sola, V. Lyubovitskij, J. Maalmi, A. Magnan, V. Maleev, A. Malinin, Y. Manabe, A. K. Managadze, M. Manfredi, S. Marsh, A. M. Marshall, A. Mefodev, P. Mermod, A. Miano, S. Mikado, Yu. Mikhaylov, D. A. Milstead, O. Mineev, A. Montanari, M. C. Montesi, K. Morishima, S. Movchan, Y. Muttoni, N. Naganawa, M. Nakamura, T. Nakano, S. Nasybulin, P. Ninin, A. Nishio, A. Novikov, B. Obinyakov, S. Ogawa, N. Okateva, B. Opitz, J. Osborne, M. Ovchynnikov, N. Owtscharenko, P. H. Owen, P. Pacholek, A. Paoloni, B. D. Park, A. Pastore, M. Patel, D. Pereyma, A. Perillo-Marcone, G. L. Petkov, K. Petridis, A. Petrov, D. Podgrudkov, V. Poliakov, N. Polukhina, J. Prieto Prieto, M. Prokudin, A. Prota, A. Quercia, A. Rademakers, A. Rakai, F. Ratnikov, T. Rawlings, F. Redi, S. Ricciardi, M. Rinaldesi, Volodymyr Rodin, Viktor Rodin, P. Robbe, A. B. Rodrigues Cavalcante, T. Roganova, H. Rokujo, G. Rosa, T. Rovelli, O. Ruchayskiy, T. Ruf, V. Samoylenko, V. Samsonov, F. Sanchez Galan, P. Santos Diaz, A. Sanz Ull, A. Saputi, O. Sato, E. S. Savchenko, J. S. Schliwinski, W. Schmidt-Parzefall, N. Serra, S. Sgobba, O. Shadura, A. Shakin, M. Shaposhnikov, P. Shatalov, T. Shchedrina, L. Shchutska, V. Shevchenko, H. Shibuya, L. Shihora, S. Shirobokov, A. Shustov, S. B. Silverstein, S. Simone, R. Simoniello, M. Skorokhvatov, S. Smirnov, J. Y. Sohn, A. Sokolenko, E. Solodko, N. Starkov, L. Stoel, M. E. Stramaglia, D. Sukhonos, Y. Suzuki, S. Takahashi, J. L. Tastet, P. Teterin, S. Than Naing, I. Timiryasov, V. Tioukov, D. Tommasini, M. Torii, N. Tosi, D. Treille, R. Tsenov, S. Ulin, E. Ursov, A. Ustyuzhanin, Z. Uteshev, G. Vankova-Kirilova, F. Vannucci, V. Venturi, S. Vilchinski, Heinz Vincke, Helmut Vincke, C. Visone, K. Vlasik, A. Volkov, R. Voronkov, S. van Waasen, R. Wanke, P. Wertelaers, O. Williams, J.-K. Woo, M. Wurm, S. Xella, D. Yilmaz, A. U. Yilmazer, C. S. Yoon, Yu. Zaytsev, and J. Zimmerman
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Astrophysics ,QB460-466 ,Nuclear and particle physics. Atomic energy. Radioactivity ,QC770-798 - Abstract
Abstract The SHiP experiment is proposed to search for very weakly interacting particles beyond the Standard Model which are produced in a 400 GeV/c proton beam dump at the CERN SPS. About $$10^{11}$$ 1011 muons per spill will be produced in the dump. To design the experiment such that the muon-induced background is minimized, a precise knowledge of the muon spectrum is required. To validate the muon flux generated by our Pythia and GEANT4 based Monte Carlo simulation (FairShip), we have measured the muon flux emanating from a SHiP-like target at the SPS. This target, consisting of 13 interaction lengths of slabs of molybdenum and tungsten, followed by a 2.4 m iron hadron absorber was placed in the H4 400 GeV/c proton beam line. To identify muons and to measure the momentum spectrum, a spectrometer instrumented with drift tubes and a muon tagger were used. During a 3-week period a dataset for analysis corresponding to $$(3.27\pm 0.07)~\times ~10^{11}$$ (3.27±0.07)×1011 protons on target was recorded. This amounts to approximatively 1% of a SHiP spill.
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- 2020
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18. ASSESSMENT OF REFLECTIVE LEARNING STRATEGIES IN PEDIATRIC SURGERY COURSE AT MEDICAL UNIVERSITY
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Anatolii Levytskyi, Oxana Vygovska, Iryna Benzar, and Dmytro Golovatiuk
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reflective learning ,online learning ,pediatric surgery ,medical university ,self-efficacy ,motivation ,critical thinking ,self-regulation ,feedback seeking ,self-assessment ,peer-assessment ,Education - Abstract
The article is aimed at studying medical students’ reflective strategies for learning the Pediatric Surgery course at medical university. We used a modified version of the Motivated Strategies for Learning questionnaire (Soemantri et al., 2018), which has four subscales: self-orientation, critical thinking, self-regulation, and feedback seeking. The self-orientation component deals with students’ perceptions on their self-efficacy and internal motivation. The participants were fourty-six 5-th year medical students from the Bogomolets National Medical University, Kyiv, Ukraine. The survey was held in May 2021 when the students finished their spring semester in the online mode. We observed the prevalence of high and moderate levels in all the variables, but the indicators of Feedback seeking are lower which can be explained by the specificities of online learning. The authors propose methodological recommendations for educators how to create an environment for reflective learning to develop students’ reflective skills and employ alternative assessment strategies in the classroom.
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- 2021
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19. Sensitivity of the SHiP experiment to Heavy Neutral Leptons
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The SHiP collaboration, C. Ahdida, R. Albanese, A. Alexandrov, A. Anokhina, S. Aoki, G. Arduini, E. Atkin, N. Azorskiy, F. Baaltasar Dos Santos, J. J. Back, A. Bagulya, A. Baranov, F. Bardou, G. J. Barker, M. Battistin, J. Bauche, A. Bay, V. Bayliss, G. Bencivenni, Y. A. Berdnikov, A. Y. Berdnikov, I. Berezkina, M. Bertani, C. Betancourt, I. Bezshyiko, O. Bezshyyko, D. Bick, S. Bieschke, A. Blanco, J. Boehm, M. Bogomilov, K. Bondarenko, W. M. Bonivento, J. Borburgh, A. Boyarsky, R. Brenner, D. Breton, R. Brundler, M. Bruschi, V. Büscher, A. Buonaura, S. Buontempo, S. Cadeddu, A. Calcaterra, M. Calviani, M. Campanelli, M. Casolino, N. Charitonidis, P. Chau, J. Chauveau, A. Chepurnov, M. Chernyavskiy, K.-Y. Choi, A. Chumakov, P. Ciambrone, K. Cornelis, M. Cristinziani, A. Crupano, G. M. Dallavalle, A. Datwyler, N. D’Ambrosio, G. D’Appollonio, L. Dedenko, P. Dergachev, J. De Carvalho Saraiva, G. De Lellis, M. de Magistris, A. De Roeck, M. De Serio, D. De Simone, C. Dib, H. Dijkstra, P. Dipinto, A. Di Crescenzo, N. Di Marco, V. Dmitrenko, S. Dmitrievskiy, A. Dolmatov, D. Domenici, S. Donskov, L. A. Dougherty, V. Drohan, A. Dubreuil, J. Ebert, T. Enik, A. Etenko, F. Fabbri, L. Fabbri, A. Fabich, O. Fedin, F. Fedotovs, M. Ferro-Luzzi, G. Felici, K. Filippov, R. A. Fini, P. Fonte, C. Franco, M. Fraser, R. Fresa, R. Froeschl, T. Fukuda, G. Galati, J. Gall, L. Gatignon, G. Gavrilov, V. Gentile, B. Goddard, L. Golinka-Bezshyyko, A. Golovatiuk, D. Golubkov, A. Golutvin, P. Gorbounov, S. Gorbunov, D. Gorbunov, V. Gorkavenko, Y. Gornushkin, M. Gorshenkov, V. Grachev, A. L. Grandchamp, G. Granich, E. Graverini, J.-L. Grenard, D. Grenier, V. Grichine, N. Gruzinskii, Yu. Guz, G. J. Haefeli, C. Hagner, H. Hakobyan, I. W. Harris, C. Hessler, A. Hollnagel, B. Hosseini, M. Hushchyn, G. Iaselli, A. Iuliano, V. Ivantchenko, R. Jacobsson, D. Joković, M. Jonker, I. Kadenko, V. Kain, C. Kamiscioglu, K. Kershaw, M. Khabibullin, E. Khalikov, G. Khaustov, G. Khoriauli, A. Khotyantsev, Y. G. Kim, V. Kim, S. H. Kim, N. Kitagawa, J.-W. Ko, K. Kodama, A. Kolesnikov, D. I. Kolev, V. Kolosov, M. Komatsu, N. Kondrateva, A. Kono, N. Konovalova, S. Kormannshaus, I. Korol, I. Korol’ko, A. Korzenev, V. Kostyukhin, E. Koukovini Platia, S. Kovalenko, I. Krasilnikova, Y. Kudenko, E. Kurbatov, P. Kurbatov, V. Kurochka, E. Kuznetsova, H. M. Lacker, M. Lamont, G. Lanfranchi, O. Lantwin, A. Lauria, K. S. Lee, K. Y. Lee, J.-M. Lévy, L. Lopes, E. Lopez Sola, V. P. Loschiavo, V. Lyubovitskij, A. M. Guler, J. Maalmi, A. Magnan, V. Maleev, A. Malinin, Y. Manabe, A. K. Managadze, M. Manfredi, S. Marsh, A. M. Marshall, A. Mefodev, P. Mermod, A. Miano, S. Mikado, Yu. Mikhaylov, D. A. Milstead, O. Mineev, A. Montanari, M. C. Montesi, K. Morishima, S. Movchan, Y. Muttoni, N. Naganawa, M. Nakamura, T. Nakano, S. Nasybulin, P. Ninin, A. Nishio, A. Novikov, B. Obinyakov, S. Ogawa, N. Okateva, B. Opitz, J. Osborne, M. Ovchynnikov, P. H. Owen, N. Owtscharenko, P. Pacholek, A. Paoloni, R. Paparella, B. D. Park, S. K. Park, A. Pastore, M. Patel, D. Pereyma, A. Perillo-Marcone, G. L. Petkov, K. Petridis, A. Petrov, D. Podgrudkov, V. Poliakov, N. Polukhina, J. Prieto Prieto, M. Prokudin, A. Prota, A. Quercia, A. Rademakers, A. Rakai, F. Ratnikov, T. Rawlings, F. Redi, S. Ricciardi, M. Rinaldesi, P. Robbe, Viktor Rodin, Volodymyr Rodin, A. B. Rodrigues Cavalcante, T. Roganova, H. Rokujo, G. Rosa, T. Rovelli, O. Ruchayskiy, T. Ruf, V. Samoylenko, V. Samsonov, F. Sanchez Galan, P. Santos Diaz, A. Sanz Ull, A. Saputi, O. Sato, E. S. Savchenko, W. Schmidt-Parzefall, N. Serra, S. Sgobba, O. Shadura, A. Shakin, M. Shaposhnikov, P. Shatalov, T. Shchedrina, L. Shchutska, V. Shevchenko, H. Shibuya, S. Shirobokov, A. Shustov, S. B. Silverstein, S. Simone, R. Simoniello, M. Skorokhvatov, S. Smirnov, J. Y. Sohn, A. Sokolenko, E. Solodko, N. Starkov, L. Stoel, B. Storaci, M. E. Stramaglia, D. Sukhonos, Y. Suzuki, S. Takahashi, J. L. Tastet, P. Teterin, S. Than Naing, I. Timiryasov, V. Tioukov, D. Tommasini, M. Torii, N. Tosi, D. Treille, R. Tsenov, S. Ulin, A. Ustyuzhanin, Z. Uteshev, G. Vankova-Kirilova, F. Vannucci, E. van Herwijnen, S. van Waasen, P. Venkova, V. Venturi, S. Vilchinski, M. Villa, Heinz Vincke, Helmut Vincke, C. Visone, K. Vlasik, A. Volkov, R. Voronkov, R. Wanke, P. Wertelaers, J.-K. Woo, M. Wurm, S. Xella, D. Yilmaz, A. U. Yilmazer, C. S. Yoon, P. Zarubin, I. Zarubina, and Yu. Zaytsev
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Beyond Standard Model ,Fixed target experiments ,Nuclear and particle physics. Atomic energy. Radioactivity ,QC770-798 - Abstract
Abstract Heavy Neutral Leptons (HNLs) are hypothetical particles predicted by many extensions of the Standard Model. These particles can, among other things, explain the origin of neutrino masses, generate the observed matter-antimatter asymmetry in the Universe and provide a dark matter candidate. The SHiP experiment will be able to search for HNLs produced in decays of heavy mesons and travelling distances ranging between O $$ \mathcal{O} $$ (50 m) and tens of kilometers before decaying. We present the sensitivity of the SHiP experiment to a number of HNL’s benchmark models and provide a way to calculate the SHiP’s sensitivity to HNLs for arbitrary patterns of flavour mixings. The corresponding tools and data files are also made publicly available.
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- 2019
- Full Text
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20. Діагностика та лікування дисплазії кульшового суглоба та вродженого звиху стегна у дітей
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A. F. Levytskyy, D. V. Golovatiuk, O. V. Karabeniuk, and V. N. Vityaz
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кульшовий суглоб ,дисплазія ,вроджений звих стегна ,діти ,Pediatrics ,RJ1-570 ,Surgery ,RD1-811 - Abstract
Дисплазія кульшового суглоба та вроджений звих стегна обумовлені внутрішньоутробним порушенням розвитку плода та залежать від багатьох ендогенних та екзогенних чинників, таких як спадковість, стать, вплив жіночіх статевих гормонів, а також вплив гормону релаксину. На процес формування кульшових суглобів впливають і механічні фактори, що обмежують рухи плода та перешкоджають його нормальному розташуванню у порожнині матки (тазова, ніжна або поперечна передлога, багатоплідна вагітність, аномалії та захворювання матки (дворога матка, сідлоподібна матка, пухлини матки)), деформації кісток тазу різного генезу, маловоддя та багатоводдя. Окремою патологією виділяють тератогенний звих стегна. При клінічному обстеженні визначаються наступні клінічні симптоми, що притаманні дисплазії кульшового суглоба та вродженого звиху стегна: симптом Іоахімсталя, Маркса–Ортолані, Барлоу, Пельтесона, Дюпіетрена, Дюшена–Тределенбурга, асиметрія шкірних складок, вкорочення кінцівки на боці ураження. Діагноз повинен бути підтверджений результатами сонографії (у віці до 5 міс.) або рентегенографії (у віці старше 5 міс.). Максимально ранній початок лікування забзпечує ефективність консервативного лікування. Консервативне лікування включає ЛФК, масаж, застосування різних відвідних пристроїв (профілактичні штанці, стремена Павліка, шина Кошлі, подушка Фрейки, апарат за типом Гневковського), витяжіня «over head», закрите вправлення звиху стегна під наркозом. Показаннями до оперативного лікування вродженого звиху стегна є: відсутність можливості закритого вправлення звиху стегна (високий звих, значний ступінь антеторсії та вальгусної деформації шийки стегна, значний ступінь недорозвинення вертлюгової западини; релюксація після закритого вправлення звиху стегна; діагностування вродженого звиху у віці старше двох років. Застосовують наступні типи оперативних втручань: відкрите вправлення звиху стегна; відкрите вправлення звиху стегна з пластикою вертлюгової западини (операції за Солтером, Пембертоном, Хіарі, подвійна остеотомія кісток таза, потрійна остеотомія кісток таза) та реконструкцією проксимального відділу стегна; паліативні операції. Пацієнт з дисплазією кульшових суглобів та вродженим звихом стегна спостерігається ортопедом до завершення періоду росту.
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- 2019
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21. Sensitivity of the SHiP experiment to dark photons decaying to a pair of charged particles
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Ahdida, C., Akmete, A., Albanese, R., Alexandrov, A., Anokhina, A., Aoki, S., Arduini, G., Atkin, E., Azorskiy, N., Back, J. J., Bagulya, A., Santos, F. Baaltasar Dos, Baranov, A., Bardou, F., Barker, G. J., Battistin, M., Bauche, J., Bay, A., Bayliss, V., Bencivenni, G., Berdnikov, A. Y., Berdnikov, Y. A., Bertani, M., Betancourt, C., Bezshyiko, I., Bezshyyko, O., Bick, D., Bieschke, S., Blanco, A., Boehm, J., Bogomilov, M., Boiarska, I., Bondarenko, K., Bonivento, W. M., Borburgh, J., Boyarsky, A., Brenner, R., Breton, D., Büscher, V., Buonaura, A., Buontempo, S., Cadeddu, S., Calcaterra, A., Calviani, M., Campanelli, M., Casolino, M., Charitonidis, N., Chau, P., Chauveau, J., Chepurnov, A., Chernyavskiy, M., Choi, K.-Y., Chumakov, A., Ciambrone, P., Cicero, V., Congedo, L., Cornelis, K., Cristinziani, M., Crupano, A., Dallavalle, G. M., Datwyler, A., D’Ambrosio, N., D’Appollonio, G., de Asmundis, R., De Carvalho Saraiva, J., De Lellis, G., de Magistris, M., De Roeck, A., De Serio, M., De Simone, D., Dedenko, L., Dergachev, P., Crescenzo, A. Di, Giulio, L. Di, Marco, N. Di, Dib, C., Dijkstra, H., Dmitrenko, V., Dougherty, L. A., Dolmatov, A., Domenici, D., Donskov, S., Drohan, V., Dubreuil, A., Durhan, O., Ehlert, M., Elikkaya, E., Enik, T., Etenko, A., Fabbri, F., Fedin, O., Fedotovs, F., Felici, G., Ferrillo, M., Ferro-Luzzi, M., Filippov, K., Fini, R. A., Fonte, P., Franco, C., Fraser, M., Fresa, R., Froeschl, R., Fukuda, T., Galati, G., Gall, J., Gatignon, L., Gavrilov, G., Gentile, V., Goddard, B., Golinka-Bezshyyko, L., Golovatiuk, A., Golovtsov, V., Golubkov, D., Golutvin, A., Gorbounov, P., Gorbunov, D., Gorbunov, S., Gorkavenko, V., Gorshenkov, M., Grachev, V., Grandchamp, A. L., Graverini, E., Grenard, J.-L., Grenier, D., Grichine, V., Gruzinskii, N., Guler, A. M., Guz, Yu., Haefeli, G. J., Hagner, C., Hakobyan, H., Harris, I. W., Herwijnen, E. van, Hessler, C., Hollnagel, A., Hosseini, B., Hushchyn, M., Iaselli, G., Iuliano, A., Jacobsson, R., Joković, D., Jonker, M., Kadenko, I., Kain, V., Kaiser, B., Kamiscioglu, C., Karpenkov, D., Kershaw, K., Khabibullin, M., Khalikov, E., Khaustov, G., Khoriauli, G., Khotyantsev, A., Kim, Y. G., Kim, V., Kitagawa, N., Ko, J.-W., Kodama, K., Kolesnikov, A., Kolev, D. I., Kolosov, V., Komatsu, M., Kono, A., Konovalova, N., Kormannshaus, S., Korol, I., Korol’ko, I., Korzenev, A., Kostyukhin, V., Platia, E. Koukovini, Kovalenko, S., Krasilnikova, I., Kudenko, Y., Kurbatov, E., Kurbatov, P., Kurochka, V., Kuznetsova, E., Lacker, H. M., Lamont, M., Lanfranchi, G., Lantwin, O., Lauria, A., Lee, K. S., Lee, K. Y., Leonardo, N., Lévy, J.-M., Loschiavo, V. P., Lopes, L., Sola, E. Lopez, Lyubovitskij, V., Maalmi, J., Magnan, A.-M., Maleev, V., Malinin, A., Manabe, Y., Managadze, A. K., Manfredi, M., Marsh, S., Marshall, A. M., Mefodev, A., Mermod, P., Miano, A., Mikado, S., Mikhaylov, Yu., Milstead, D. A., Mineev, O., Montanari, A., Montesi, M. C., Morishima, K., Movchan, S., Muttoni, Y., Naganawa, N., Nakamura, M., Nakano, T., Nasybulin, S., Ninin, P., Nishio, A., Obinyakov, B., Ogawa, S., Okateva, N., Opitz, B., Osborne, J., Ovchynnikov, M., Owtscharenko, N., Owen, P. H., Pacholek, P., Paoloni, A., Park, B. D., Pastore, A., Patel, M., Pereyma, D., Perillo-Marcone, A., Petkov, G. L., Petridis, K., Petrov, A., Podgrudkov, D., Poliakov, V., Polukhina, N., Prieto, J. Prieto, Prokudin, M., Prota, A., Quercia, A., Rademakers, A., Rakai, A., Ratnikov, F., Rawlings, T., Redi, F., Ricciardi, S., Rinaldesi, M., Rodin, Volodymyr, Rodin, Viktor, Robbe, P., Cavalcante, A. B. Rodrigues, Roganova, T., Rokujo, H., Rosa, G., Rovelli, T., Ruchayskiy, O., Ruf, T., Samoylenko, V., Samsonov, V., Galan, F. Sanchez, Diaz, P. Santos, Ull, A. Sanz, Saputi, A., Sato, O., Savchenko, E. S., Schliwinski, J. S., Schmidt-Parzefall, W., Serra, N., Sgobba, S., Shadura, O., Shakin, A., Shaposhnikov, M., Shatalov, P., Shchedrina, T., Shchutska, L., Shevchenko, V., Shibuya, H., Shirobokov, S., Shustov, A., Silverstein, S. B., Simone, S., Simoniello, R., Skorokhvatov, M., Smirnov, S., Soares, G., Sohn, J. Y., Sokolenko, A., Solodko, E., Starkov, N., Stoel, L., Stramaglia, M. E., Sukhonos, D., Suzuki, Y., Takahashi, S., Tastet, J. L., Teterin, P., Naing, S. Than, Timiryasov, I., Tioukov, V., Tommasini, D., Torii, M., Tosi, N., Treille, D., Tsenov, R., Ulin, S., Ursov, E., Ustyuzhanin, A., Uteshev, Z., Uvarov, L., Vankova-Kirilova, G., Vannucci, F., Venturi, V., Vidulin, I., Vilchinski, S., Vincke, Heinz, Vincke, Helmut, Visone, C., Vlasik, K., Volkov, A., Voronkov, R., Waasen, S. van, Wanke, R., Wertelaers, P., Williams, O., Woo, J.-K., Wurm, M., Xella, S., Yilmaz, D., Yilmazer, A. U., Yoon, C. S., Zaytsev, Yu., Zelenov, A., and Zimmerman, J.
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- 2021
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22. FUNCTIONS AND FACTORS FOR THE DEVELOPMENT OF THE FOOD MARKET IN THE REGION FOOD SUPPLY
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Sergei Mikhailovich Golovatiuk, Aleksandr Pavlovich Zadkov, and Nikita Viktorovich Kostin
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General Medicine - Published
- 2022
23. Directional sensitivity of the NEWSdm experiment to cosmic ray boosted dark matter
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Agafonova, N.Y., primary, Alexandrov, A., additional, Anokhina, A.M., additional, Asada, T., additional, Ashikhmin, V.V., additional, Boccia, V., additional, Centanni, D., additional, Chernyavskii, M.M., additional, Chin, N., additional, D'Ambrosio, N., additional, De Lellis, G., additional, Di Crescenzo, A., additional, Dowdy, Y.C., additional, Dmitrievski, S., additional, Enikeev, R.I., additional, Galati, G., additional, Galkin, V.I., additional, Golovatiuk, A., additional, Gorbunov, S.A., additional, Gornushkin, Y., additional, Guler, A.M., additional, Gulyaeva, V.V., additional, Iuliano, A., additional, Khalikov, E.V., additional, Kim, S.H., additional, Konovalova, N.S., additional, Krasilnikova, Y.O., additional, Lauria, A., additional, Lee, K.Y., additional, Loschiavo, V.P., additional, Managadze, A.K., additional, Miloi, A., additional, Montesi, M.C., additional, Naka, T., additional, Okateva, N.M., additional, Park, B.D., additional, Podgrudkov, D.A., additional, Polukhina, N.G., additional, Roganova, T.M., additional, Rosa, G., additional, Samoilov, M.A., additional, Sadykov, Z.T., additional, Sadovsky, A., additional, Saeki, K., additional, Sato, O., additional, Shakiryanova, I.R., additional, Shchedrina, T.V., additional, Shiraishi, T., additional, Sohn, J.Y., additional, Sotnikov, A., additional, Starkov, N.I., additional, Starkova, E.N., additional, Strekalina, D.M., additional, Tioukov, V., additional, Ursov, E.D., additional, Ustyuzhanin, A., additional, Vasina, S., additional, Voronkov, R.A., additional, and Yoon, C.S., additional
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- 2023
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24. RPC-based Muon Identification System for the neutrino detector of the SHiP experiment
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Albanese, R., Alexandrov, A., Buontempo, S., Choi, K. -Y., Congedo, L., de Asmundis, R., De Lellis, G., de Magistris, M., De Robertis, G., De Serio, M., Debernardis, F., Di Crescenzo, A., Fini, R. A., Fresa, R., Galati, G., Golovatiuk, A., van Herwijnen, E., Iaselli, G., Iuliano, A., Jo, Y., Kang, M., Kim, Y. G., Kim, S. H., Ko, J. -W., Lauria, A., Lee, K. S., Lee, K. Y., Loschiavo, V. P., Miano, A., Montesi, M. C., Park, B. D., Pastore, A., Prota, A., Quercia, A., Ruf, T., Simone, S., Sohn, J. Y., Tioukov, V., Visone, C., Woo, J. -K., Yoon, C. S., Albanese, R., Alexandrov, A., Buontempo, S., Choi, K. -Y., Congedo, L., de Asmundis, R., De Lellis, G., de Magistris, M., De Robertis, G., De Serio, M., Debernardis, F., Di Crescenzo, A., Fini, R. A., Fresa, R., Galati, G., Golovatiuk, A., van Herwijnen, E., Iaselli, G., Iuliano, A., Jo, Y., Kang, M., Kim, Y. G., Kim, S. H., Ko, J. -W., Lauria, A., Lee, K. S., Lee, K. Y., Loschiavo, V. P., Miano, A., Montesi, M. C., Park, B. D., Pastore, A., Prota, A., Quercia, A., Ruf, T., Simone, S., Sohn, J. Y., Tioukov, V., Visone, C., Woo, J. -K., and Yoon, C. S.
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Detectors and Experimental Techniques ,Instrumentation ,Mathematical Physics - Abstract
The SHiP experiment has been proposed at CERN to shed light on phenomena still unexplained in the framework of the Standard Model, such as the nature of dark matter, the baryonic asymmetry of the Universe and the neutrino oscillations, searching for hints of New Physics. A section of the detector will be dedicated to the study of neutrino physics with special emphasis on tau neutrino properties, still very poorly measured. A system to identify the muons produced in neutrino interactions, based on RPC technology, has been proposed and it is presented in detail in this paper.
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- 2023
25. Observation of collider muon neutrinos with the SND@LHC experiment
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Albanese, R., Alexandrov, A., Alicante, F., Anokhina, A., Asada, T., Battilana, C., Bay, A., Betancourt, C., Blanco Castro, A., Bogomilov, M., Bonacorsi, D., Bonivento, W. M., Bordalo, P., Boyarsky, A., Buontempo, S., Campanelli, M., Camporesi, T., Canale, V., Castro, A., Centanni, D., Cerutti, F., Chernyavskiy, M., Choi, K. -Y., Cholak, S., Cindolo, F., Climescu, M., Conaboy, A. P., Dallavalle, G. M., Davino, D., de Bryas, P. T., De Lellis, G., De Magistris, M., De Roeck, A., De R´ujula, A., De Serio, M., De Simone, D., Di Crescenzo, A., Don`a, R., Durhan, O., Fabbri, F., Fedotovs, F., Ferrillo, M., Ferro-Luzzi, M., Fini, R. A., Fiorillo, A., Fresa, R., Funk, W., Golovatiuk, A., Golutvin, A., Graverini, E., Guler, A. M., Guliaeva, V., Haefeli, G. J., Helo Herrera, J. C., van Herwijnen, E., Iengo, P., Ilieva, S., Infantino, A., Iuliano, A., Jacobsson, R., Kamiscioglu, C., Kauniskangas, A. M., Khalikov, E., Kim, S. H., Kim, Y. G., Klioutchnikov, G., Komatsu, M., Konovalova, N., Kovalenko, S., Kuleshov, S., Lacker, H. M., Lantwin, O., Lasagni Manghi, F., Lauria, A., Lee, K. Y., Lee, K. S., Lo Meo, S., Loschiavo, V. P., Marcellini, S., Margiotta, A., Mascellani, A., Miano, A., Mikulenko, A., Montesi, M. C., Navarria, F. L., Ogawa, S., Okateva, N., Ovchynnikov, M., Paggi, G., Park, B. D., Pastore, A., Perrotta, A., Podgrudkov, D., Polukhina, N., Prota, A., Quercia, A., Ramos, S., Reghunath, A., Roganova, T., Ronchetti, F., Rovelli, T., Ruchayskiy, O., Ruf, T., Sabate Gilarte, M., Samoilov, M., Scalera, V., Schneider, O., Sekhniaidze, G., Serra, N., Shaposhnikov, M., Shevchenko, V., Shchedrina, T., Shchutska, L., Shibuya, H., Simone, S., Siroli, G. P., Sirri, G., Soares, G., Soto Sandoval, O. J., Spurio, M., Starkov, N., Timiryasov, I., Tioukov, V., Trippl, C., Ursov, E., Ustyuzhanin, A., Vankova-Kirilova, G., Verguilov, V., Viegas Guerreiro Leonardo, N., Vilela, C., Visone, C., Wanke, R., Yaman, E., Yazici, C., Yoon, C. S., Zaffaroni, E., and Zamora Saa, J.
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High Energy Physics - Experiment ,Physics - Instrumentation and Detectors ,hep-ex ,Detectors and Experimental Techniques ,physics.ins-det ,Particle Physics - Experiment - Abstract
We report the direct observation of muon neutrino interactions with the SND@LHC detector at the Large Hadron Collider. A data set of proton-proton collisions at $\sqrt{s} = 13.6\,$TeV collected by SND@LHC in 2022 is used, corresponding to an integrated luminosity of 36.8$\,\rm{fb}^{-1}$. The search is based on information from the active electronic components of the SND@LHC detector, which covers the pseudo-rapidity region of $7.2 < \eta < 8.4$, inaccessible to the other experiments at the collider. Muon neutrino candidates are identified through their charged-current interaction topology, with a track propagating through the entire length of the muon detector. After selection cuts, 8 $\nu_\mu$ interaction candidate events remain with an estimated background of 0.076 events, yielding a significance of seven standard deviations for the observed $\nu_\mu$ signal., Comment: Submitted to Phys. Rev. Lett
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- 2023
26. RPC-based Muon Identification System for the neutrino detector of the SHiP experiment
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Albanese, R., primary, Alexandrov, A., additional, Buontempo, S., additional, Choi, K.-Y., additional, Congedo, L., additional, de Asmundis, R., additional, De Lellis, G., additional, de Magistris, M., additional, De Robertis, G., additional, De Serio, M., additional, Debernardis, F., additional, Di Crescenzo, A., additional, Fini, R.A., additional, Fresa, R., additional, Galati, G., additional, Golovatiuk, A., additional, van Herwijnen, E., additional, Iaselli, G., additional, Iuliano, A., additional, Jo, Y., additional, Kang, M., additional, Kim, Y.G., additional, Kim, S.H., additional, Ko, J.-W., additional, Lauria, A., additional, Lee, K.S., additional, Lee, K.Y., additional, Loschiavo, V.P., additional, Miano, A., additional, Montesi, M.C., additional, Park, B.D., additional, Pastore, A., additional, Prota, A., additional, Quercia, A., additional, Ruf, T., additional, Simone, S., additional, Sohn, J.Y., additional, Tioukov, V., additional, Visone, C., additional, Woo, J.-K., additional, and Yoon, C.S., additional
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- 2023
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27. FUNCTIONS AND FACTORS FOR THE DEVELOPMENT OF THE FOOD MARKET IN THE REGION FOOD SUPPLY
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Golovatiuk, Sergei Mikhailovich, primary, Zadkov, Aleksandr Pavlovich, additional, and Kostin, Nikita Viktorovich, additional
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- 2022
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28. Track reconstruction and matching between emulsion and silicon pixel detectors for the SHiP-charm experiment
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Ahdida, C., Akmete, A., Albanese, R., Alt, J., Alexandrov, A., Anokhina, A., Aoki, S., Arduini, G., Atkin, E., Azorskiy, N., Back, J.J., Bagulya, A., Baaltasar Dos Santos, F., Baranov, A., Bardou, F., Barker, G.J., Battistin, M., Bauche, J., Bay, A., Bayliss, V., Bencivenni, G., Berdnikov, A.Y., Berdnikov, Y.A., Bertani, M., Betancourt, C., Bezshyiko, I., Bezshyyko, O., Bick, D., Bieschke, S., Blanco, A., Boehm, J., Bogomilov, M., Boiarska, I., Bondarenko, K., Bonivento, W.M., Borburgh, J., Boyarsky, A., Brenner, R., Breton, D., Brignoli, A., Büscher, V., Buonaura, A., Buonocore, L., Buontempo, S., Cadeddu, S., Calcaterra, A., Calviani, M., Campanelli, M., Casolino, M., Charitonidis, N., Chau, P., Chauveau, J., Chepurnov, A., Chernyavskiy, M., Choi, K.Y., Chumakov, A., Ciambrone, P., Cicero, V., Climescu, M., Conaboy, A., Congedo, L., Cornelis, K., Cristinziani, M., Crupano, A., Dallavalle, G.M., Datwyler, A., D'ambrosio, N., D'appollonio, G., De Asmundis, R., De Carvalho Saraiva, J., De Lellis, G., De Magistris, M., De Roeck, A., De Serio, M., De Simone, D., Dedenko, L., Dergachev, P., Di Crescenzo, A., Di Giulio, L., Di Marco, N., Dib, C., Dijkstra, H., Dmitrenko, V., Dougherty, L.A., Dolmatov, A., Domenici, D., Donskov, S., Drohan, V., Dubreuil, A., Durhan, O., Ehlert, M., Elikkaya, E., Enik, T., Etenko, A., Fabbri, F., Fedin, O., Fedotovs, F., Felici, G., Ferrillo, M., Ferro-Luzzi, M., Filippov, K., Fini, R.A., Fischer, H., Fonte, P., Franco, C., Fraser, M., Fresa, R., Froeschl, R., Frugiuele, C., Fukuda, T., Galati, G., Gall, J., Gatignon, L., Gavrilov, G., Gentile, V., Goddard, B., Golinka-Bezshyyko, L., Golovatiuk, A., Golovtsov, V., Golubkov, D., Golutvin, A., Gorbounov, P., Gorbunov, D., Gorbunov, S., Gorkavenko, V., Gorshenkov, M., Grachev, V., Grandchamp, A.L., Graverini, E., Grenard, J.L., Grenier, D., Grichine, V., Gruzinskii, N., Guler, A.M., Guz, Yu, Haefeli, G.J., Hagner, C., Hakobyan, H., Harris, I.W., Van Herwijnen, E., Hessler, C., Hollnagel, A., Hosseini, B., Hushchyn, M., Iaselli, G., Iuliano, A., Jacobsson, R., Joković, D., Jonker, M., Kadenko, I., Kain, V., Kaiser, B., Kamiscioglu, C., Karpenkov, D., Kershaw, K., Khabibullin, M., Khalikov, E., Khaustov, G., Khoriauli, G., Khotyantsev, A., Kim, Y.G., Kim, V., Kitagawa, N., Ko, J.W., Kodama, K., Kolesnikov, A., Kolev, D.I., Kolosov, V., Komatsu, M., Kono, A., Konovalova, N., Kormannshaus, S., Korol, I., Korol'ko, I., Korzenev, A., Kostyukhin, V., Koukovini Platia, E., Kovalenko, S., Krasilnikova, I., Kudenko, Y., Kurbatov, E., Kurbatov, P., Kurochka, V., Kuznetsova, E., Lacker, H.M., Lamont, M., Lanfranchi, G., Lantwin, O., Lauria, A., Lee, K.S., Lee, K.Y., Leonardo, N., Lévy, J.M., Loschiavo, V.P., Lopes, L., Lopez Sola, E., Maltoni, F., Lyons, F., Lyubovitskij, V., Maalmi, J., Magnan, A.M., Maleev, V., Malinin, A., Manabe, Y., Managadze, A.K., Manfredi, M., Marsh, S., Marshall, A.M., Mattelaer, O., Mefodev, A., Mermod, P., Miano, A., Mikado, S., Mikhaylov, Y.U., Mikulenko, A., Milstead, D.A., Mineev, O., Montanari, A., Montesi, M.C., Morishima, K., Movchan, S., Muttoni, Y., Naganawa, N., Nakamura, M., Nakano, T., Nasybulin, S., Ninin, P., Nishio, A., Novikov, A., Obinyakov, B., Ogawa, S., Okateva, N., Opitz, B., Osborne, J., Ovchynnikov, M., Owtscharenko, N., Owen, P.H., Pacholek, P., Paoloni, A., Park, B.D., Pastore, A., Patel, M., Pereyma, D., Perillo-Marcone, A., Petkov, G.L., Petridis, K., Petrov, A., Podgrudkov, D., Poliakov, V., Polukhina, N., Prieto Prieto, J., Prokudin, M., Prota, A., Quercia, A., Rademakers, A., Rakai, A., Ratnikov, F., Rawlings, T., Redi, F., Reghunath, A., Ricciardi, S., Rinaldesi, M., Rodin, Volodymyr, Rodin, Viktor, Robbe, P., Rodrigues Cavalcante, A.B., Roganova, T., Rokujo, H., Rosa, G., Rovelli, T., Ruchayskiy, O., Ruf, T., Samoylenko, V., Samsonov, V., Sanchez Galan, F., Santos Diaz, P., Sanz Ull, A., Saputi, A., Sato, O., Savchenko, E.S., Schliwinski, J.S., Schmidt-Parzefall, W., Schumann, M., Serra, N., Sgobba, S., Shadura, O., Shakin, A., Shaposhnikov, M., Shatalov, P., Shchedrina, T., Shchutska, L., Shevchenko, V., Shibuya, H., Shihora, L., Shirobokov, S., Shustov, A., Silverstein, S.B., Simone, S., Simoniello, R., Skorokhvatov, M., Smirnov, S., Soares, G., Sohn, J.Y., Sokolenko, A., Solodko, E., Starkov, N., Stoel, L., Stramaglia, M.E., Sukhonos, D., Suzuki, Y., Takahashi, S., Tastet, J.L., Teterin, P., Than Naing, S., Timiryasov, I., Tioukov, V., Tommasini, D., Torii, M., Tosi, N., Tramontano, F., Treille, D., Tsenov, R., Ulin, S., Ursov, E., Ustyuzhanin, A., Uteshev, Z., Uvarov, L., Vankova-Kirilova, G., Vannucci, F., Venkova, P., Venturi, V., Vidulin, I., Vilchinski, S., Vincke, Heinz, Vincke, Helmut, Visone, C., Vlasik, K., Volkov, A., Voronkov, R., Van Waasen, S., Wanke, R., Wertelaers, P., Williams, O., Woo, J.K., Wurm, M., Xella, S., Yilmaz, D., Yilmazer, A.U., Yoon, C.S., Zaytsev, Y.U., Zelenov, A., Zimmerman, J., Ahdida, C., Akmete, A., Albanese, R., Alt, J., Alexandrov, A., Anokhina, A., Aoki, S., Arduini, G., Atkin, E., Azorskiy, N., Back, J. J., Bagulya, A., Baaltasar Dos Santos, F., Baranov, A., Bardou, F., Barker, G. J., Battistin, M., Bauche, J., Bay, A., Bayliss, V., Bencivenni, G., Berdnikov, A. Y., Berdnikov, Y. A., Bertani, M., Betancourt, C., Bezshyiko, I., Bezshyyko, O., Bick, D., Bieschke, S., Blanco, A., Boehm, J., Bogomilov, M., Boiarska, I., Bondarenko, K., Bonivento, W. M., Borburgh, J., Boyarsky, A., Brenner, R., Breton, D., Brignoli, A., Buscher, V., Buonaura, A., Buontempo, S., Cadeddu, S., Calcaterra, A., Calviani, M., Campanelli, M., Casolino, M., Charitonidis, N., Chau, P., Chauveau, J., Chepurnov, A., Chernyavskiy, M., Choi, K. -Y., Chumakov, A., Ciambrone, P., Cicero, V., Climescu, M., Conaboy, A., Congedo, L., Cornelis, K., Cristinziani, M., Crupano, A., Dallavalle, G. M., Datwyler, A., D'Ambrosio, N., D'Appollonio, G., De Asmundis, R., De Carvalho Saraiva, J., De Lellis, G., De Magistris, M., De Roeck, A., De Serio, M., De Simone, D., Dedenko, L., Dergachev, P., Di Crescenzo, A., Di Giulio, L., Di Marco, N., Dib, C., Dijkstra, H., Dmitrenko, V., Dougherty, L. A., Dolmatov, A., Domenici, D., Donskov, S., Drohan, V., Dubreuil, A., Durhan, O., Ehlert, M., Elikkaya, E., Enik, T., Etenko, A., Fabbri, F., Fedin, O., Fedotovs, F., Felici, G., Ferrillo, M., Ferro-Luzzi, M., Filippov, K., Fini, R. A., Fischer, H., Fonte, P., Franco, C., Fraser, M., Fresa, R., Froeschl, R., Fukuda, T., Galati, G., Gall, J., Gatignon, L., Gavrilov, G., Gentile, V., Goddard, B., Golinka-Bezshyyko, L., Golovatiuk, A., Golovtsov, V., Golubkov, D., Golutvin, A., Gorbounov, P., Gorbunov, D., Gorbunov, S., Gorkavenko, V., Gorshenkov, M., Grachev, V., Grandchamp, A. L., Graverini, E., Grenard, J. -L., Grenier, D., Grichine, V., Gruzinskii, N., Guler, A. M., Guz, Y., Haefeli, G. J., Hagner, C., Hakobyan, H., Harris, I. W., Van Herwijnen, E., Hessler, C., Hollnagel, A., Hosseini, B., Hushchyn, M., Iaselli, G., Iuliano, A., Jacobsson, R., Jokovic, D., Jonker, M., Kadenko, I., Kain, V., Kaiser, B., Kamiscioglu, C., Karpenkov, D., Kershaw, K., Khabibullin, M., Khalikov, E., Khaustov, G., Khoriauli, G., Khotyantsev, A., Kim, Y. G., Kim, V., Kitagawa, N., Ko, J. -W., Kodama, K., Kolesnikov, A., Kolev, D. I., Kolosov, V., Komatsu, M., Kono, A., Konovalova, N., Kormannshaus, S., Korol, I., Korol'Ko, I., Korzenev, A., Kostyukhin, V., Koukovini Platia, E., Kovalenko, S., Krasilnikova, I., Kudenko, Y., Kurbatov, E., Kurbatov, P., Kurochka, V., Kuznetsova, E., Lacker, H. M., Lamont, M., Lanfranchi, G., Lantwin, O., Lauria, A., Lee, K. S., Lee, K. Y., Leonardo, N., Levy, J. -M., Loschiavo, V. P., Lopes, L., Lopez Sola, E., Lyons, F., Lyubovitskij, V., Maalmi, J., Magnan, A. -M., Maleev, V., Malinin, A., Manabe, Y., Managadze, A. K., Manfredi, M., Marsh, S., Marshall, A. M., Mefodev, A., Mermod, P., Miano, A., Mikado, S., Mikhaylov, Y., Mikulenko, A., Milstead, D. A., Mineev, O., Montanari, A., Montesi, M. C., Morishima, K., Movchan, S., Muttoni, Y., Naganawa, N., Nakamura, M., Nakano, T., Nasybulin, S., Ninin, P., Nishio, A., Obinyakov, B., Ogawa, S., Okateva, N., Osborne, J., Ovchynnikov, M., Owtscharenko, N., Owen, P. H., Pacholek, P., Paoloni, A., Park, B. D., Pastore, A., Patel, M., Pereyma, D., Perillo-Marcone, A., Petkov, G. L., Petridis, K., Petrov, A., Podgrudkov, D., Poliakov, V., Polukhina, N., Prieto Prieto, J., Prokudin, M., Prota, A., Quercia, A., Rademakers, A., Rakai, A., Ratnikov, F., Rawlings, T., Redi, F., Reghunath, A., Ricciardi, S., Rinaldesi, M., Rodin, V., Robbe, P., Rodrigues Cavalcante, A. B., Roganova, T., Rokujo, H., Rosa, G., Rovelli, T., Ruchayskiy, O., Ruf, T., Samoylenko, V., Samsonov, V., Sanchez Galan, F., Santos Diaz, P., Sanz Ull, A., Saputi, A., Sato, O., Savchenko, E. S., Schliwinski, J. S., Schmidt-Parzefall, W., Schumann, M., Serra, N., Sgobba, S., Shadura, O., Shakin, A., Shaposhnikov, M., Shatalov, P., Shchedrina, T., Shchutska, L., Shevchenko, V., Shibuya, H., Shihora, L., Shirobokov, S., Shustov, A., Silverstein, S. B., Simone, S., Simoniello, R., Skorokhvatov, M., Smirnov, S., Soares, G., Sohn, J. Y., Sokolenko, A., Solodko, E., Starkov, N., Stoel, L., Stramaglia, M. E., Sukhonos, D., Suzuki, Y., Takahashi, S., Tastet, J. L., Teterin, P., Than Naing, S., Timiryasov, I., Tioukov, V., Tommasini, D., Torii, M., Tosi, N., Treille, D., Tsenov, R., Ulin, S., Ursov, E., Ustyuzhanin, A., Uteshev, Z., Uvarov, L., Vankova-Kirilova, G., Vannucci, F., Venkova, P., Venturi, V., Vidulin, I., Vilchinski, S., Vincke, H., Visone, C., Vlasik, K., Volkov, A., Voronkov, R., Van Waasen, S., Wanke, R., Wertelaers, P., Williams, O., Woo, J. -K., Wurm, M., Xella, S., Yilmaz, D., Yilmazer, A. U., Yoon, C. S., Zaytsev, Y., Zelenov, A., Zimmerman, J., and The SHiP Collaboration
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sources ,Physics - Instrumentation and Detectors ,Physics::Instrumentation and Detectors ,Detector alignment and calibration methods (lasers, sources, particle-beams) ,FOS: Physical sciences ,Accelerator Physics and Instrumentation ,cluster finding ,Pattern recognition ,ddc:610 ,Detectors and Experimental Techniques ,Nuclear Experiment ,Instrumentation ,physics.ins-det ,QC ,Mathematical Physics ,Particle tracking detectors (Solid-state detectors) ,Pattern recognition, cluster finding, calibration and fitting methods ,pattern recognition ,Acceleratorfysik och instrumentering ,Instrumentation and Detectors (physics.ins-det) ,particle-beams) ,calibration and fitting methods ,detector alignment and calibration methods (lasers ,Detector alignment and calibration methods (lasers ,High Energy Physics::Experiment - Abstract
In July 2018 an optimization run for the proposed charm cross section measurement for SHiP was performed at the CERN SPS. A heavy, moving target instrumented with nuclear emulsion films followed by a silicon pixel tracker was installed in front of the Goliath magnet at the H4 proton beamline. Behind the magnet, scintillating-fibre, drift-tube and RPC detectors were placed. The purpose of this run was to validate the measurement's feasibility, to develop the required analysis tools and fine-tune the detector layout. In this paper, we present the track reconstruction in the pixel tracker and the track matching with the moving emulsion detector. The pixel detector performed as expected and it is shown that, after proper alignment, a vertex matching rate of 87 % is achieved., 10 pages, 5 figures; for replacement: added detector efficiencies and track resolution, updated description of moving pattern and detector orientation, all opening angles now in cartesian coordinate system; Editor: Nikolaus Owtscharenko; to be published in JINST
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- 2022
29. BDF/SHiP at the ECN3 high-intensity beam facility
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Aberle, O, Ahdida, C, Albanese, R, Alt, J, Alexandrov, A, Aoki, S, Aritunov, D, Arrutia, P, Bay, A, Balazs, K, Betancourt, C, Bezshyiko, I, Bezshyyko, O, Bick, D, Blanco, A, Bogomilov, M, Boiarska, I, Bondarenko, K, Bonivento, W M, Boyarsky, A, Bohles, M, Breton, D, Brignoli, A, Buonaura, A, Buontempo, S, Calviani, M, Campanelli, M, Centanni, D, Choi, K-Y, Climescu, M, Conaboy, A, Congedo, L, Cristinziani, M, Crupano, A, Dallavalle, G M, D'Ambrosio, N, de Asmundis, R, de Bryas, P, De Carvalho Saraiva, J, De Lellis, G, de Magistris, M, De Roeck, A, De Serio, M, De Simone, D, Dergachev, P, Deucher, P, Di Crescenzo, A, Dijkstra, H, Durhan, O, Dutheil, Y, Elikkaya, E, Esposito, L S, Fedotovs, F, Ferrillo, M, Ferro-Luzzi, M, Fini, R A, Fiorillo, G, Fischer, H, Fonte, P, Franqueira Ximenes, R, Fraser, M, Fresa, R, Fukuda, T, Galati, G, Galleazzi, F, Gilardoni, S, Golinka-Bezshyyko, L, Golovatiuk, A, Golutvin, A, Gorkavenko, V, Graverini, E, Grenard, J-L, Grewing, C, Griesemer, T, Guler, A M, Haefeli, G J, Hagner, C, Helo, J C, van Herwijnen, E, Hollnagel, A, Iuliano, A, Jacobsson, R, Jonker, M, Kadenko, I, Kain, V, Kamiscioglu, C, Kim, Y G, Kitagawa, N, Kodama, K, Kolev, D I, Komatsu, M, Kostyukhin, V, Krzempek, L, Kuleshov, S, Kurbatov, E, Lacker, H M, Lafarge, D, Lantwin, O, Lauria, A, Lee, K S, Lee, K Y, Leonardo, N, Loschiavo, V P, Lopes, L, Lyons, F, Maalmi, J, Magnan, A-M, Marsh, S, Marshall, A M, Martin Ruiz, J M, Mazzola, G, Mena Andrade, R F, Miano, A, Mikado, S, Mikulenko, A, Montesi, M C, Morishima, K, Muttoni, Y, Naganawa, N, Nakamura, M, Nakano, T, Navascues Cornago, A, Ninin, P, Ogawa, S, Osborne, J, Ovchynnikov, M, Owtscharenko, N, Park, B D, Pastore, A, Patel, M, Petridis, K, Prota, A, Quercia, A, Rademakers, A, Ramjiawan, R, Ratnikov, F, Redi, F, Reghunath, A, Rokujo, H, Ruchayskiy, O, Ruf, T, Sanchez Galan, F, Santos Dias, P, Sato, O, Schmidt-Parzefall, W, Schumann, M, Serra, N, Shaposhnikov, M, Shchutska, L, Shibuya, H, Simone, S, Soares, G, Sohn, J Y, Sokolenko, A, Soto, O, Takahashi, S, Tastet, J L, Timiryasov, I, Tioukov, V, Tommasini, D, Treille, D, Tsenov, R, Ulloa, P, Ursov, E, Vankova-Kirilova, G, Velotti, F, Vilchinski, S, Vincke, H, Visone, C, van Waasen, S, Vojtyla, P, Wertelaers, P, Wurm, M, Xella, S, Yilmaz, D, Yoon, C S, and Zamora Saa, J
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Detectors and Experimental Techniques - Abstract
The BDF/SHiP collaboration has proposed a general-purpose intensity-frontier experimental facility operating in beam-dump mode at the CERN SPS accelerator to search for feebly interacting GeV-scale particles and to perform measurements in neutrino physics. BDF/SHiP complements the world-wide program of New Physics searches by exploring a large region of parameter space which cannot be addressed by other experiments, and which reaches several orders of magnitude below existing bounds. The SHiP detector is sensitive both to decay and scattering signatures of models with heavy neutral leptons, dark photons, dark scalars, axion-like particles, light dark matter and other feebly interacting particles. In neutrino physics, BDF/SHiP can perform unprecedented measurements with tau neutrinos and neutrino-induced charm production. Following the Technical Proposal submitted in 2015, the subsequent three-year Comprehensive Design Study (CDS), and the recent study of BDF/SHiP in existing beam facilities around the SPS, this paper restates the motivation and reports on the implementation and physics performance of BDF/SHiP in the SPS ECN3 high-intensity beam facility.
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- 2022
30. SND@LHC: The Scattering and Neutrino Detector at the LHC
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Acampora, G., Ahdida, C., Albanese, R., Albrecht, C., Alexandrov, A., Andreini, M., Anokhina, A., Auberson, N., Baldanza, C., Battilana, C., Bay, A., Bernard, F., Bestmann, P., Betancourt, C., Blanco, A., Bogomilov, M., Bonacorsi, D., Bonivento, W.M., Bordalo, P., Boyarsky, A., Breglio, G., Buonaura, A., Buontempo, S., Cafaro, V.D., Callignon, M., Camporesi, T., Campanelli, M., Canale, V., Cassese, F., Castro, A., Centanni, D., Cepeda Godoy, S.A., Cerutti, F., Charitonidis, N., Chernyavskiy, M., Choi, K.-Y., Cholak, S., Cicero, V., Cindolo, F., Climescu, M., Conaboy, A.P., Congedo, L., Crespo, O., Cristinziani, M., Crupano, A., Dallavalle, G.M., D'Ambrosio, N., De Carvalho Saraiva, J., De Bryas Dexmiers D'Archiac, P.T., De Lellis, G., de Magistris, M., De Roeck, A., De Rújula, A., De Serio, M., De Simone, D., Dedenko, L., Di Crescenzo, A., Di Giulio, L., Dolmatov, A., Dreyfus, L., Durhan, O., Fabbri, F., Fasanella, D., Fedotovs, F., Ferrillo, M., Ferro-Luzzi, M., Fienga, F., Fini, R.A., Fiorillo, A., Fonte, P., Fresa, R., Frei, R., Funk, W., Galati, G., Galkin, V., Garay Walls, F., Garcia Alia, R., Gerbershagen, A., Giordano, V., Golovatiuk, A., Golutvin, A., Gorshenkov, M., Graverini, E., Grenard, J.-L., Guler, A.M., Gulyaeva, V., Haefeli, G.J., Helo, J.C., Herwijnen, E.van, Iengo, P., Ilieva, S., Infantino, A., Irace, A., Iuliano, A., Jacobsson, R., Jacquart, M., Kamiscioglu, C., Khalikov, E., Kim, Y.G., Kim, S.H., Komatsu, M., Konovalova, N., Kovalenko, S., Krasilnikova, I., Kuleshov, S., Lacker, H.M., Lantwin, O., Lasagni Manghi, F., Lauria, A., Lee, K.S., Lee, K.Y., Leonardo, N., Liz Vargas, M.P., Lo Meo, S., Lemettais, C., Loschiavo, V.P., Lopes, L., Lussi, B., Marcellini, S., Margiotta, A., Magnan, A., Maier, R., Maietta, M., Malinin, A., Marrazzo, V.R., Maurer, Y., Managadze, A.K., Mascellani, A., Miano, A., Mikulenko, A., Minelli, F., Montanari, A., Montesi, M.C., Naka, T., Navarria, F.L., Ogawa, S., Okateva, N., Owtscharenko, N., Ovchynnikov, M., Park, B.D., Passeggio, G., Pastore, A., Patel, M., Patrizii, L., Perrotta, A., Petrov, A., Podgrudkov, D., Polini, A., Polukhina, N., Prota, A., Queiroz, F., Quercia, A., Ramos, S., Ratnikov, F., Reghunath, A., Riccio, M., Rodrigues Cavalcante, A.B., Roganova, T., Rovelli, T., Ruchayskiy, O., Ruf, T., Sabate Gilarte, M., Sanchez Galan, F., Santos Diaz, P., Schaffner, M., Schneider, O., Sekhniaidze, G., Serra, N., Shchedrina, T., Shchutska, L., Shevchenko, V., Shibuya, H., Shirobokov, S., Shmanin, E., Simone, S., Siroli, G.P., Sito, L., Sirri, G., Schmidt, J., Soares, G., Sohn, J.Y., Soto Sandoval, O.J., Spurio, M., Starkov, N., Tastet, J.L., Timiryasov, I., Tioukov, V., Tosi, N., Trippl, C., Ulloa Poblete, P.A., Ursov, E., Ustyuzhanin, A., Vankova-Kirilova, G., Vendeuvre, C., Visone, C., Vollhardt, A., Wanke, R., Yoon, C.S., Zamora Saa, J., Zaffaroni, E., and Zick, H.J.
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Physics - Instrumentation and Detectors ,hep-ex ,Detectors and Experimental Techniques ,physics.ins-det ,Particle Physics - Experiment ,High Energy Physics - Experiment - Abstract
SND@LHC is a compact and stand-alone experiment designed to perform measurements with neutrinos produced at the LHC in the pseudo-rapidity region of ${7.2 < \eta < 8.4}$. The experiment is located 480 m downstream of the ATLAS interaction point, in the TI18 tunnel. The detector is composed of a hybrid system based on an 830 kg target made of tungsten plates, interleaved with emulsion and electronic trackers, also acting as an electromagnetic calorimeter, and followed by a hadronic calorimeter and a muon identification system. The detector is able to distinguish interactions of all three neutrino flavours, which allows probing the physics of heavy flavour production at the LHC in the very forward region. This region is of particular interest for future circular colliders and for very high energy astrophysical neutrino experiments. The detector is also able to search for the scattering of Feebly Interacting Particles. In its first phase, the detector will operate throughout LHC Run 3 and collect a total of 250 $\text{fb}^{-1}$., Comment: 57 pages. To be published in JINST
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- 2022
31. COMPREHENSIVE NEUROMONITORING OF THE NEWBORN WITH MANIFESTATIONS OF SEVERE ASPHYXIA AND THERAPEUTIC HY
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Anastasiya Babintseva, О.В. Tarasiuk, Dariia Kostiukova, and I.V. Golovatiuk
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Asphyxia ,medicine.diagnostic_test ,business.industry ,Sinus bradycardia ,Magnetic resonance imaging ,Hypothermia ,medicine.disease ,Intensive care unit ,law.invention ,Epilepsy ,law ,Anesthesia ,Medicine ,Childbirth ,medicine.symptom ,business ,Depression (differential diagnoses) - Abstract
Birth asphyxia is a separate nosological form characterized by clinical symptoms ofcardiorespiratory and neurological depression of a newbornwith possible subsequent development of encephalopathyand multiorgan dysfunction, as well as laboratory signsof side effects of fetal hypoxia before or during childbirth(significant metabolic or mixed acidosis in umbilical cordblood gases). The current method of treatment of childrenwith manifestations of asphyxia is therapeutic hypothermia,that should be accompanied by continuous monitoring ofthe patient's cerebral functions.The article presents a clinical case of severe asphyxiain the full-term boy born by cesarean section due to fetaldistress and effusion of meconium amniotic fluid. The scoreon the Apgar scale was 1 point at the end of the first minuteof life, and 3 points five minutes after birth. Therapeutichypothermia by passive cooling was started at the maternityhospital and continued in the intensive care unit of NationalChildren’s Specialized Hospital “OKHMATDYT” of theMinistry of Health of Ukraine (Kyiv, Ukraine).The child was getting dynamic complex neuromonitoringthat included clinical assessment of neurologicalstatus, cerebral oximetry by near-infrared spectroscopy,neurosonography, magnetic resonance imaging, videoelectroencephalographic monitoring and polysomnography.The results of a comprehensive examination of the childmade it possible to identify functional markers of cerebraldisorders: cortical rhythm depression, electro-clinicalseizures, changes in oxygenation of brain tissues, signs ofleukomalacia and ischemic damage, etc. Polysomnographicsigns of sleep-related breathing disorders were found outwith the development of mild apnea-hypopnea syndrome,sinus bradycardia, delayed maturation of physiologicalsleep precursors. Delayed motor development withoutstructural epilepsy were noted at follow-up at the age of2 months.
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- 2021
32. Effect of cholecalciferol supplementation on the clinical course of hospitalized COVID 19 patients
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Ksenia Golovatiuk and Arina Mikhailova
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- 2022
33. Sensitivity of the SHiP experiment to dark photons decaying to a pair of charged particles
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S. Kormannshaus, K. Kershaw, N. Leonardo, M. Chernyavskiy, Oleg Ruchayskiy, Ciro Visone, I. Korol, Alexey Boyarsky, J.-M. Lévy, E. Elikkaya, E. Kurbatov, Davide Tommasini, D. Grenier, V. Poliakov, M. Manfredi, T. M. Roganova, E. Koukovini Platia, Sergey E. Ulin, Serge Smirnov, V.D. Samoylenko, Victor Golovtsov, A. Golovatiuk, S. Vilchinski, P. Ninin, Andrea Miano, F. L. Fabbri, A. Quercia, E. Solodko, W. Schmidt-Parzefall, Naotaka Naganawa, Mario Campanelli, Paolo Ciambrone, N. Konovalova, Salvatore Buontempo, Andrey Ustyuzhanin, Yu. Guz, I. Korol’ko, Mikhail V. Gorshenkov, L. Di Giulio, G. Soares, Vladimir Samsonov, M. Torii, Alexey A. Petrov, H. Shibuya, V. M. Grachev, V. E. Lyubovitskij, P. Wertelaers, Philippe Mermod, G. Felici, Nicola D'Ambrosio, A. Iuliano, Annarita Buonaura, Gianluigi Arduini, P. Dergachev, A.B. Rodrigues Cavalcante, Akira Nishio, S. Simone, Christopher Betancourt, J. J. Back, Claudio O. Dib, Pavel Shatalov, R. Froeschl, A. Bay, A. Datwyler, A. Rakai, Petr Andreevich Gorbounov, A. Saputi, B. Opitz, Giuseppe D'Appollonio, K.Y. Lee, A. Kono, Mike Lamont, J. Borburgh, Alexander Malinin, Vadim Kostyukhin, P. Santos Diaz, E. V. Atkin, Y. G. Kim, Konstantinos Petridis, R. Voronkov, A. L. Grandchamp, Liliana Congedo, N. Azorskiy, Alexander E. Shustov, A. Mefodev, A. Golutvin, Oleg Bezshyyko, B. Hosseini, Andrea Prota, J. Boehm, Giuseppe Iaselli, P. Pacholek, Genady Gavrilov, A. Kolesnikov, P. Kurbatov, John Osborne, Victor Maleev, R. de Asmundis, Nicolò Tosi, L. Golinka-Bezshyyko, P. Fonte, M. Ehlert, R. Jacobsson, V. Kurochka, A. Shakin, A.U. Yilmazer, F. Fedotovs, K. Filippov, D. Breton, D. Pereyma, D. A. Podgrudkov, B. Obinyakov, Mikhail Hushchyn, J. S. Schliwinski, L. Stoel, Volker Büscher, Alexey Volkov, Raffaele Albanese, S. Shirobokov, Shigeki Aoki, J.-L. Grenard, J. Bauche, Patrick Owen, D. Yilmaz, Z. M. Uteshev, V. Bayliss, E. van Herwijnen, A. Zelenov, M. Prokudin, Rosa Simoniello, S. Nasybulin, P. Teterin, D. Karpenkov, S. Ricciardi, G. L. Petkov, A. Korzenev, Y. Muttoni, F. Redi, O. Durhan, G. Bencivenni, V. P. Loschiavo, Ekaterina Kuznetsova, Oleg Fedin, K. S. Lee, A. Crupano, Heinz Vincke, Oksana Shadura, Elena Graverini, V. Drohan, Tiziano Rovelli, N. Owtscharenko, V. Cicero, S. van Waasen, A. M. Guler, Valery V. Dmitrenko, A. Alexandrov, Patrick Robbe, A. Hollnagel, Nobuko Kitagawa, J. Zimmerman, Caren Hagner, K.-Y. Choi, Daniel Treille, J. Gall, Satoru Takahashi, G. Vankova-Kirilova, A. Khotyantsev, L. Gatignon, Yosuke Suzuki, S. Marsh, L. Lopes, J. De Carvalho Saraiva, Gianfranca De Rosa, M. D. Skorokhvatov, Viktor Rodin, J. Prieto Prieto, Michael Wurm, A. Dolmatov, Sandro Cadeddu, Oleg Mineev, Inar Timiryasov, Giuliana Galati, G. Haefeli, G. M. Dallavalle, E. Khalikov, Karel Cornelis, Y. Berdnikov, Samuel Silverstein, Stefano Sgobba, A. Akmete, Helmut Vincke, Yuki Manabe, M. Casolino, M. M. Khabibullin, Lesya Shchutska, Alessandro Pastore, Matthew Fraser, F. Vannucci, Alexander Mclean Marshall, F. Bardou, W. Bonivento, J. Maalmi, D. Sukhonos, Arnaud Dubreuil, A. Sanz Ull, M. Battistin, Fedor Ratnikov, Iaroslava Bezshyiko, A. S. Chepurnov, M. de Magistris, Brennan Goddard, David Milstead, Alessandro Paoloni, Iryna Boiarska, B. D. Park, N. Okateva, Hans Dijkstra, Alessandro Montanari, J. Y. Sohn, Nicola Serra, E. S. Savchenko, E. Ursov, M. Bogomilov, Heiko Lacker, Natalia Polukhina, C. Franco, J.-K. Woo, Toshiyuki Nakano, A. Bagulya, D. Domenici, M. Nakamura, G. De Lellis, Yu. Zaytsev, G.V. Khaustov, J. L. Tastet, S. Movchan, Verena Kain, A. A. Rademakers, I. Kadenko, Maria Elena Stramaglia, A. Blanco, Vladimir Shevchenko, A. M. Anokhina, T. Enik, M. Bertani, F. Sanchez Galan, L. G. Dedenko, N. Di Marco, B. Kaiser, M. Jonker, Kunihiro Morishima, Lev Uvarov, C. S. Yoon, S. Bieschke, Markus Cristinziani, R. A. Fini, M. Patel, G. Khoriauli, I. Krasilnikova, Hiroki Rokujo, Kyrylo Bondarenko, Maria Cristina Montesi, S. V. Donskov, Konstantin F. Vlasik, Mikhail Shaposhnikov, P. Chau, O. Williams, D. Kolev, S. Ogawa, C. Kamiscioglu, Alexander Baranov, Yu. Mikhaylov, Dmitry Golubkov, A. K. Managadze, T. Fukuda, H. Hakobyan, M. Rinaldesi, T. Ruf, S. Than Naing, L. A. Dougherty, E. Lopez Sola, Richard Brenner, G. Lanfranchi, Nikolaos Charitonidis, F. Baaltasar Dos Santos, A. Calcaterra, D. Bick, N. I. Starkov, A.V. Etenko, Gareth J. Barker, V. Gentile, D. De Simone, Osamu Sato, Adele Lauria, Martina Ferrillo, Maksym Ovchynnikov, Marco Calviani, J.-W. Ko, S. Mikado, Raffaele Fresa, A. De Roeck, C. Hessler, A. Berdnikov, D. Joković, M. De Serio, A. Sokolenko, T. Rawlings, N. Gruzinskii, R. Tsenov, Oliver Lantwin, Masahiro Komatsu, A. Chumakov, Volodymyr Rodin, V. Grichine, V.N. Kolosov, Anne-Marie Magnan, J. Chauveau, T. Shchedrina, V. Venturi, V. Tioukov, K. Kodama, Stefania Xella, I. Vidulin, Antonio Perillo-Marcone, Rainer Wanke, Dmitry Gorbunov, Yu.A. Kudenko, M. Ferro-Luzzi, Victor Kim, Volodymyr M. Gorkavenko, I. W. Harris, S. Gorbunov, Sergey Kovalenko, C. Ahdida, A. Di Crescenzo, Laboratoire de l'Accélérateur Linéaire (LAL), Centre National de la Recherche Scientifique (CNRS)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris-Sud - Paris 11 (UP11), Laboratoire de Physique Nucléaire et de Hautes Énergies (LPNHE (UMR_7585)), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Sorbonne Université (SU)-Centre National de la Recherche Scientifique (CNRS)-Université de Paris (UP), SHiP, Ahdida, C., Akmete, A., Albanese, R., Alexandrov, A., Anokhina, A., Aoki, S., Arduini, G., Atkin, E., Azorskiy, N., Back, J. J., Bagulya, A., Santos, F. Baaltasar Do, Baranov, A., Bardou, F., Barker, G. J., Battistin, M., Bauche, J., Bay, A., Bayliss, V., Bencivenni, G., Berdnikov, A. Y., Berdnikov, Y. A., Bertani, M., Betancourt, C., Bezshyiko, I., Bezshyyko, O., Bick, D., Bieschke, S., Blanco, A., Boehm, J., Bogomilov, M., Boiarska, I., Bondarenko, K., Bonivento, W. M., Borburgh, J., Boyarsky, A., Brenner, R., Breton, D., Büscher, V., Buonaura, A., Buontempo, S., Cadeddu, S., Calcaterra, A., Calviani, M., Campanelli, M., Casolino, M., Charitonidis, N., Chau, P., Chauveau, J., Chepurnov, A., Chernyavskiy, M., Choi, K. -Y., Chumakov, A., Ciambrone, P., Cicero, V., Congedo, L., Cornelis, K., Cristinziani, M., Crupano, A., Dallavalle, G. M., Datwyler, A., D’Ambrosio, N., D’Appollonio, G., de Asmundis, R., De Carvalho Saraiva, J., De Lellis, G., de Magistris, M., De Roeck, A., De Serio, M., De Simone, D., Dedenko, L., Dergachev, P., Di Crescenzo, A., Giulio, L. Di, Marco, N. Di, Dib, C., Dijkstra, H., Dmitrenko, V., Dougherty, L. A., Dolmatov, A., Domenici, D., Donskov, S., Drohan, V., Dubreuil, A., Durhan, O., Ehlert, M., Elikkaya, E., Enik, T., Etenko, A., Fabbri, F., Fedin, O., Fedotovs, F., Felici, G., Ferrillo, M., Ferro-Luzzi, M., Filippov, K., Fini, R. A., Fonte, P., Franco, C., Fraser, M., Fresa, R., Froeschl, R., Fukuda, T., Galati, G., Gall, J., Gatignon, L., Gavrilov, G., Gentile, V., Goddard, B., Golinka-Bezshyyko, L., Golovatiuk, A., Golovtsov, V., Golubkov, D., Golutvin, A., Gorbounov, P., Gorbunov, D., Gorbunov, S., Gorkavenko, V., Gorshenkov, M., Grachev, V., Grandchamp, A. L., Graverini, E., Grenard, J. -L., Grenier, D., Grichine, V., Gruzinskii, N., Guler, A. M., Guz, Yu., Haefeli, G. J., Hagner, C., Hakobyan, H., Harris, I. W., Herwijnen, E. van, Hessler, C., Hollnagel, A., Hosseini, B., Hushchyn, M., Iaselli, G., Iuliano, A., Jacobsson, R., Joković, D., Jonker, M., Kadenko, I., Kain, V., Kaiser, B., Kamiscioglu, C., Karpenkov, D., Kershaw, K., Khabibullin, M., Khalikov, E., Khaustov, G., Khoriauli, G., Khotyantsev, A., Kim, Y. G., Kim, V., Kitagawa, N., Ko, J. -W., Kodama, K., Kolesnikov, A., Kolev, D. I., Kolosov, V., Komatsu, M., Kono, A., Konovalova, N., Kormannshaus, S., Korol, I., Korol’Ko, I., Korzenev, A., Kostyukhin, V., Platia, E. Koukovini, Kovalenko, S., Krasilnikova, I., Kudenko, Y., Kurbatov, E., Kurbatov, P., Kurochka, V., Kuznetsova, E., Lacker, H. M., Lamont, M., Lanfranchi, G., Lantwin, O., Lauria, A., Lee, K. S., Lee, K. Y., Leonardo, N., Lévy, J. -M., Loschiavo, V. P., Lopes, L., Sola, E. Lopez, Lyubovitskij, V., Maalmi, J., Magnan, A. -M., Maleev, V., Malinin, A., Manabe, Y., Managadze, A. K., Manfredi, M., Marsh, S., Marshall, A. M., Mefodev, A., Mermod, P., Miano, A., Mikado, S., Mikhaylov, Yu., Milstead, D. A., Mineev, O., Montanari, A., Montesi, M. C., Morishima, K., Movchan, S., Muttoni, Y., Naganawa, N., Nakamura, M., Nakano, T., Nasybulin, S., Ninin, P., Nishio, A., Obinyakov, B., Ogawa, S., Okateva, N., Opitz, B., Osborne, J., Ovchynnikov, M., Owtscharenko, N., Owen, P. H., Pacholek, P., Paoloni, A., Park, B. D., Pastore, A., Patel, M., Pereyma, D., Perillo-Marcone, A., Petkov, G. L., Petridis, K., Petrov, A., Podgrudkov, D., Poliakov, V., Polukhina, N., Prieto, J. Prieto, Prokudin, M., Prota, A., Quercia, A., Rademakers, A., Rakai, A., Ratnikov, F., Rawlings, T., Redi, F., Ricciardi, S., Rinaldesi, M., Rodin, Volodymyr, Rodin, Viktor, Robbe, P., Cavalcante, A. B. Rodrigue, Roganova, T., Rokujo, H., Rosa, G., Rovelli, T., Ruchayskiy, O., Ruf, T., Samoylenko, V., Samsonov, V., Galan, F. Sanchez, Diaz, P. Santo, Ull, A. Sanz, Saputi, A., Sato, O., Savchenko, E. S., Schliwinski, J. S., Schmidt-Parzefall, W., Serra, N., Sgobba, S., Shadura, O., Shakin, A., Shaposhnikov, M., Shatalov, P., Shchedrina, T., Shchutska, L., Shevchenko, V., Shibuya, H., Shirobokov, S., Shustov, A., Silverstein, S. B., Simone, S., Simoniello, R., Skorokhvatov, M., Smirnov, S., Soares, G., Sohn, J. Y., Sokolenko, A., Solodko, E., Starkov, N., Stoel, L., Stramaglia, M. E., Sukhonos, D., Suzuki, Y., Takahashi, S., Tastet, J. L., Teterin, P., Naing, S. Than, Timiryasov, I., Tioukov, V., Tommasini, D., Torii, M., Tosi, N., Treille, D., Tsenov, R., Ulin, S., Ursov, E., Ustyuzhanin, A., Uteshev, Z., Uvarov, L., Vankova-Kirilova, G., Vannucci, F., Venturi, V., Vidulin, I., Vilchinski, S., Vincke, Heinz, Vincke, Helmut, Visone, C., Vlasik, K., Volkov, A., Voronkov, R., Waasen, S. van, Wanke, R., Wertelaers, P., Williams, O., Woo, J. -K., Wurm, M., Xella, S., Yilmaz, D., Yilmazer, A. U., Yoon, C. S., Zaytsev, Yu., Zelenov, A., Zimmerman, J., Ahdida C., Akmete A., Albanese R., Alexandrov A., Anokhina A., Aoki S., Arduini G., Atkin E., Azorskiy N., Back J.J., Bagulya A., Santos F.B.D., Baranov A., Bardou F., Barker G.J., Battistin M., Bauche J., Bay A., Bayliss V., Bencivenni G., Berdnikov A.Y., Berdnikov Y.A., Bertani M., Betancourt C., Bezshyiko I., Bezshyyko O., Bick D., Bieschke S., Blanco A., Boehm J., Bogomilov M., Boiarska I., Bondarenko K., Bonivento W.M., Borburgh J., Boyarsky A., Brenner R., Breton D., Buscher V., Buonaura A., Buontempo S., Cadeddu S., Calcaterra A., Calviani M., Campanelli M., Casolino M., Charitonidis N., Chau P., Chauveau J., Chepurnov A., Chernyavskiy M., Choi K.-Y., Chumakov A., Ciambrone P., Cicero V., Congedo L., Cornelis K., Cristinziani M., Crupano A., Dallavalle G.M., Datwyler A., D'Ambrosio N., D'Appollonio G., de Asmundis R., De Carvalho Saraiva J., De Lellis G., de Magistris M., De Roeck A., De Serio M., De Simone D., Dedenko L., Dergachev P., Crescenzo A.D., Giulio L.D., Marco N.D., Dib C., Dijkstra H., Dmitrenko V., Dougherty L.A., Dolmatov A., Domenici D., Donskov S., Drohan V., Dubreuil A., Durhan O., Ehlert M., Elikkaya E., Enik T., Etenko A., Fabbri F., Fedin O., Fedotovs F., Felici G., Ferrillo M., Ferro-Luzzi M., Filippov K., Fini R.A., Fonte P., Franco C., Fraser M., Fresa R., Froeschl R., Fukuda T., Galati G., Gall J., Gatignon L., Gavrilov G., Gentile V., Goddard B., Golinka-Bezshyyko L., Golovatiuk A., Golovtsov V., Golubkov D., Golutvin A., Gorbounov P., Gorbunov D., Gorbunov S., Gorkavenko V., Gorshenkov M., Grachev V., Grandchamp A.L., Graverini E., Grenard J.-L., Grenier D., Grichine V., Gruzinskii N., Guler A.M., Guz Y., Haefeli G.J., Hagner C., Hakobyan H., Harris I.W., van Herwijnen E., Hessler C., Hollnagel A., Hosseini B., Hushchyn M., Iaselli G., Iuliano A., Jacobsson R., Jokovic D., Jonker M., Kadenko I., Kain V., Kaiser B., Kamiscioglu C., Karpenkov D., Kershaw K., Khabibullin M., Khalikov E., Khaustov G., Khoriauli G., Khotyantsev A., Kim Y.G., Kim V., Kitagawa N., Ko J.-W., Kodama K., Kolesnikov A., Kolev D.I., Kolosov V., Komatsu M., Kono A., Konovalova N., Kormannshaus S., Korol I., Korol'ko I., Korzenev A., Kostyukhin V., Platia E.K., Kovalenko S., Krasilnikova I., Kudenko Y., Kurbatov E., Kurbatov P., Kurochka V., Kuznetsova E., Lacker H.M., Lamont M., Lanfranchi G., Lantwin O., Lauria A., Lee K.S., Lee K.Y., Leonardo N., Levy J.-M., Loschiavo V.P., Lopes L., Sola E.L., Lyubovitskij V., Maalmi J., Magnan A.-M., Maleev V., Malinin A., Manabe Y., Managadze A.K., Manfredi M., Marsh S., Marshall A.M., Mefodev A., Mermod P., Miano A., Mikado S., Mikhaylov Y., Milstead D.A., Mineev O., Montanari A., Montesi M.C., Morishima K., Movchan S., Muttoni Y., Naganawa N., Nakamura M., Nakano T., Nasybulin S., Ninin P., Nishio A., Obinyakov B., Ogawa S., Okateva N., Opitz B., Osborne J., Ovchynnikov M., Owtscharenko N., Owen P.H., Pacholek P., Paoloni A., Park B.D., Pastore A., Patel M., Pereyma D., Perillo-Marcone A., Petkov G.L., Petridis K., Petrov A., Podgrudkov D., Poliakov V., Polukhina N., Prieto J.P., Prokudin M., Prota A., Quercia A., Rademakers A., Rakai A., Ratnikov F., Rawlings T., Redi F., Ricciardi S., Rinaldesi M., Rodin V., Robbe P., Cavalcante A.B.R., Roganova T., Rokujo H., Rosa G., Rovelli T., Ruchayskiy O., Ruf T., Samoylenko V., Samsonov V., Galan F.S., Diaz P.S., Ull A.S., Saputi A., Sato O., Savchenko E.S., Schliwinski J.S., Schmidt-Parzefall W., Serra N., Sgobba S., Shadura O., Shakin A., Shaposhnikov M., Shatalov P., Shchedrina T., Shchutska L., Shevchenko V., Shibuya H., Shirobokov S., Shustov A., Silverstein S.B., Simone S., Simoniello R., Skorokhvatov M., Smirnov S., Soares G., Sohn J.Y., Sokolenko A., Solodko E., Starkov N., Stoel L., Stramaglia M.E., Sukhonos D., Suzuki Y., Takahashi S., Tastet J.L., Teterin P., Naing S.T., Timiryasov I., Tioukov V., Tommasini D., Torii M., Tosi N., Treille D., Tsenov R., Ulin S., Ursov E., Ustyuzhanin A., Uteshev Z., Uvarov L., Vankova-Kirilova G., Vannucci F., Venturi V., Vidulin I., Vilchinski S., Vincke H., Visone C., Vlasik K., Volkov A., Voronkov R., Waasen S., Wanke R., Wertelaers P., Williams O., Woo J.-K., Wurm M., Xella S., Yilmaz D., Yilmazer A.U., Yoon C.S., Zaytsev Y., Zelenov A., and Zimmerman J.
- Subjects
Photon ,Physics and Astronomy (miscellaneous) ,parton distributions ,lepton ,PROTON-PROTON COLLISIONS ,QC770-798 ,Astrophysics ,01 natural sciences ,Dark photon ,High Energy Physics - Experiment ,LIMITS ,High Energy Physics - Experiment (hep-ex) ,photon: mass ,pi(0) ,[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex] ,LEPTON ,Physics ,search ,charged particle ,Charged particle ,vector particle: massive ,QB460-466 ,photon: mixing ,Production (computer science) ,phi-meson decays ,numerical calculations: Monte Carlo ,upper limit ,Particle Physics - Experiment ,Quark ,Particle physics ,photon: decay modes ,PHI-MESON DECAYS ,FOS: Physical sciences ,Astrophysics::Cosmology and Extragalactic Astrophysics ,Accelerator Physics and Instrumentation ,quark ,E(+)E(-) ,VECTOR GAUGE BOSON ,SEARCH ,Nuclear and particle physics. Atomic energy. Radioactivity ,0103 physical sciences ,e(+)e(-) ,ddc:530 ,Sensitivity (control systems) ,010306 general physics ,Engineering (miscellaneous) ,vector gauge boson ,photon: hidden sector ,hep-ex ,010308 nuclear & particles physics ,PI(0) ,Acceleratorfysik och instrumentering ,Fermion ,sensitivity ,WEIZSACKER-WILLIAMS METHOD ,PARTON DISTRIBUTIONS ,SHIP - dark photons - BSM ,proton-proton collisions ,High Energy Physics::Experiment ,limits ,Lepton ,weizsacker-williams method ,experimental results - Abstract
Dark photons are hypothetical massive vector particles that could mix with ordinary photons. The simplest theoretical model is fully characterised by only two parameters: the mass of the dark photon m$$_{\gamma ^{\mathrm {D}}}$$ γ D and its mixing parameter with the photon, $$\varepsilon $$ ε . The sensitivity of the SHiP detector is reviewed for dark photons in the mass range between 0.002 and 10 GeV. Different production mechanisms are simulated, with the dark photons decaying to pairs of visible fermions, including both leptons and quarks. Exclusion contours are presented and compared with those of past experiments. The SHiP detector is expected to have a unique sensitivity for m$$_{\gamma ^{\mathrm {D}}}$$ γ D ranging between 0.8 and 3.3$$^{+0.2}_{-0.5}$$ - 0.5 + 0.2 GeV, and $$\varepsilon ^2$$ ε 2 ranging between $$10^{-11}$$ 10 - 11 and $$10^{-17}$$ 10 - 17 .
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- 2021
34. Teaching Pediatric Surgery in the Online Environment: Challenges and Opportunities
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Iryna M Benzar, Volodymyr Vitiaz, Dmytro Golovatiuk, Oleksandr V Karabenyuk, and Anatolii Levitskyi
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media_common.quotation_subject ,Distance education ,online learning ,Computer applications to medicine. Medical informatics ,R858-859.7 ,interaction ,medical students ,computer.software_genre ,Task (project management) ,Videoconferencing ,videoconferencing ,Computer literacy ,ComputingMilieux_COMPUTERSANDEDUCATION ,pediatric surgery ,Time management ,Quality (business) ,media_common ,Medical education ,General Engineering ,Critical thinking ,theoretical knowledge ,Scale (social sciences) ,online platform ,Psychology ,computer ,practical skills ,course - Abstract
The research is aimed at investigating challenges and opportunities of teaching online course in Pediatric Surgery at Bogomolets National Medical University, Kyiv, Ukraine. The participants were 42 students of the 5-th year of study. After taking the course, the students were offered to fill in 24-item 4-point Likert-type scale containing the statements regarding various issues of distance learning: gaining theoretical and practical knowledge, teacher-student and student-student interaction, the interface and content of the course, technical issues and computer literacy, academic success, development of self-directed learning skills, as well as motivation for learning, critical thinking, problem solving, self-organization and time management skills. The median value for the total cohort is 3 indicating that the majority of students gave affirmative responses. Students positively evaluated the course content and structure, interface of the platform Neuron and the interactive tools like forums, chats, videoconferencing which allowed communicating with peers and the teacher in real time and getting immediate feedback. At the same time, students experience lack of practical skills as quarantine measures don’t allow attending face-to-face lessons, they cannot interact with patients and participate in surgical operations, etc. This is a challenging task to develop medical students’ motivation, professional problem-solving and critical thinking skills in the online environment. The authors offer the recommendations to enhance the quality of online learning: use image-guided surgical simulation tools, implement interactive forms of virtual teaching, case method.
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- 2021
35. Efficiency of complex microfertilizers and biostimulants application in potato growing in the Western Forest-Steppe of Ukraine
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R.Y. Golovatiuk, R.O. Mialkovsky, and P.V. Bezvikonny
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Forest steppe ,Geography ,Forestry - Published
- 2021
36. METABOLIC CHANGES OF CONNECTIVE TISSUE IN CHILDREN WITH BONE CYST
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O. M. Magomedov, A. F. Levytsky, D. V. Golovatiuk, A. N. Velikyy, and T. A. Polishchuk
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metabolic indices ,connective tissue ,bone cysts ,Biotechnology ,TP248.13-248.65 - Abstract
The results of the study of diagnostically important metabolism parameters in patients with bone cysts in different stages of the disease are presented. It is shown that an increase activity of protein banding collagenase, alkaline phosphatase and also of hydroxyproline, glycosaminoglycans contents due to lower levels of calcium and inorganic phosphate levels increase in blood serum are expressed in a stage osteolysis than the step of separating. Decreasing the amount of glycosaminoglycans and collagen in bone indicates an intensification of catabolic processes in the connective tissue matrix. Diagnostically important indicators of the degree of disturbance of bone metabolism are the level of collagen, proteoglycans and activity of marker enzymes — collagenase and alkaline phosphatase. Based on the evaluation of sensitivity, specificity and diagnostic efficiency of the obtained results, we can recommend the threshold values of the investigated parameters of basic organic components and mineral metabolism of bone for the differential diagnosis of stages of bone cysts in children, which will serve as a basis for the development of appropriate diagnostic tests.
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- 2013
- Full Text
- View/download PDF
37. Deep Learning for direct Dark Matter search with nuclear emulsions
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Artem Golovatiuk, Andrey Ustyuzhanin, Andrey Alexandrov, Giovanni De Lellis, Golovatiuk, Artem, Ustyuzhanin, Andrey, Alexandrov, Andrey, and De Lellis, Giovanni
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High Energy Physics - Experiment (hep-ex) ,Hardware and Architecture ,FOS: Physical sciences ,General Physics and Astronomy ,Astrophysics - Instrumentation and Methods for Astrophysics ,Instrumentation and Methods for Astrophysics (astro-ph.IM) ,High Energy Physics - Experiment - Abstract
We propose a new method for the discrimination of sub-micron nuclear recoil tracks from an instrumental background in fine-grain nuclear emulsions used in the directional dark matter search. The proposed method uses a 3D Convolutional Neural Network, whose parameters are optimised by Bayesian search. Unlike previous studies focused on extracting the directional information, we focus on the signal/background separation exploiting the polarisation dependence of the Localised Surface Plasmon Resonance phenomenon. Comparing the proposed method with the conventional cut-based approach shows a significant boost in the reduction factor for given signal efficiency.
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- 2022
38. Directionality preservation of nuclear recoils in an emulsion detector for directional dark matter search
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G. De Lellis, A. Golovatiuk, A. Di Crescenzo, Andrey Alexandrov, Valeri Tioukov, Alexandrov, A., De Lellis, G., Di Crescenzo, A., Golovatiuk, A., and Tioukov, V.
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Physics ,Physics - Instrumentation and Detectors ,010308 nuclear & particles physics ,Physics::Instrumentation and Detectors ,Dark matter ,Detector ,Nuclear Theory ,FOS: Physical sciences ,Astronomy and Astrophysics ,Instrumentation and Detectors (physics.ins-det) ,01 natural sciences ,Nuclear physics ,Condensed Matter::Soft Condensed Matter ,Recoil ,WIMP ,0103 physical sciences ,Atom ,Emulsion ,Nuclear emulsion ,High Energy Physics::Experiment ,Granularity ,Astrophysics - Instrumentation and Methods for Astrophysics ,Nuclear Experiment ,Instrumentation and Methods for Astrophysics (astro-ph.IM) - Abstract
Nuclear emulsion is a well-known detector type proposed also for the directional detection of dark matter. In this paper, we study one of the most important properties of direction-sensitive detectors: the preservation by nuclear recoils of the direction of impinging dark matter particles. For nuclear emulsion detectors, it is the first detailed study where a realistic nuclear recoil energy distribution with all possible recoil atom types is exploited. Moreover, for the first time we study the granularity effect on the emulsion detector directional performance. As well as we compare nuclear emulsion with other directional detectors: in terms of direction preservation nuclear emulsion outperforms the other detectors for WIMP masses above 100 GeV/c$^2$., Comment: Prepared for submission to JCAP
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- 2021
39. Directional Dark Matter Search with the NEWSdm experiment
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Golovatiuk, Artem, primary
- Published
- 2021
- Full Text
- View/download PDF
40. Deep learning for Directional Dark Matter search
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Giovanni De Lellis, A. Golovatiuk, Andrey Ustyuzhanin, Golovatiuk, Artem, De Lellis, Giovanni, and Ustyuzhanin, Andrey
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History ,Astrophysics and Astronomy ,Computer science ,Physics::Instrumentation and Detectors ,Dark matter ,FOS: Physical sciences ,02 engineering and technology ,Parameter space ,01 natural sciences ,Convolutional neural network ,Education ,WIMP ,0103 physical sciences ,010306 general physics ,Instrumentation and Methods for Astrophysics (astro-ph.IM) ,business.industry ,Deep learning ,Detector ,Pattern recognition ,021001 nanoscience & nanotechnology ,Computer Science Applications ,Feature (computer vision) ,Artificial intelligence ,Neutrino ,Astrophysics - Instrumentation and Methods for Astrophysics ,0210 nano-technology ,business ,astro-ph.IM - Abstract
We provide an algorithm for detection of possible dark matter particle interactions recorded within NEWSdm detector. The NEWSdm (Nuclear Emulsions for WIMP Search directional measure) is an underground Direct detection Dark Matter search experiment. The usage of recent developments in the nuclear emulsions allows probing new regions in the WIMP parameter space. The directional approach, which is the key feature of the NEWSdm experiment, gives the unique chance of overcoming the "neutrino floor". Deep Neural Networks were used for separation between potential DM signal and various classes of background. In this paper, we present the usage of deep 3D Convolutional Neural Networks to take into account the physical peculiarities of the datasets and report the achievement of the required $10^4$ background rejection power., Comment: 5 pages, 6 figures. This is a proceedings paper from the ACAT2019 conference: https://indico.cern.ch/event/708041
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- 2020
41. The experimental facility for the Search for Hidden Particles at the CERN SPS
- Author
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I. W. Harris, S. Gorbunov, Sergey Kovalenko, C. Ahdida, Karel Cornelis, A. Iuliano, Annarita Buonaura, C. Hessler, A. Berdnikov, S. Simone, Christopher Betancourt, Pavel Shatalov, Yu. Mikhaylov, Dmitry Golubkov, A. Calcaterra, W. Schmidt-Parzefall, D. Bick, R. Froeschl, A. U. Yilmazer, A. K. Managadze, Adrian Fabich, Yu. Guz, M. Rinaldesi, J. Boehm, A. Crupano, Rainer Wanke, D. Joković, L. A. Dougherty, P. Santos Diaz, Andrea Prota, D. Sukhonos, Helmut Vincke, L. Stoel, L. Lopes, Volker Büscher, Alessandro Paoloni, Philippe Mermod, S. Vilchinski, P. Ninin, Andrea Miano, Giuseppe D'Appollonio, Claudio O. Dib, V. M. Grachev, Akira Nishio, K. S. Lee, Alexey A. Petrov, E. V. Atkin, L. Gatignon, B. Hosseini, V. Ivantchenko, Alexander Malinin, Vadim Kostyukhin, B. D. Park, A. Bay, F. Baaltasar Dos Santos, S. Mikado, Mike Lamont, Heiko Lacker, Natalia Polukhina, M. De Serio, I. Krasilnikova, Nicolò Tosi, Kyrylo Bondarenko, Mikhail Shaposhnikov, L. G. Dedenko, Hiroki Rokujo, M. M. Khabibullin, F. Bardou, Oksana Shadura, A. Bagulya, D. Pereyma, L. Golinka-Bezshyyko, A. Golutvin, Dmitry Gorbunov, M. Ferro-Luzzi, A. Blanco, P. Fonte, H. Shibuya, Richard Jacobsson, Toshiyuki Nakano, G. De Lellis, K. Filippov, E. Khalikov, Victor Kim, Volodymyr M. Gorkavenko, Gianluigi Arduini, S. Movchan, G. Gavrilov, Oleg Mineev, Satoru Takahashi, Raffaele Fresa, W. Bonivento, Alexander Mclean Marshall, S. van Waasen, V. Bayliss, Kunihiro Morishima, Osamu Sato, I. Kadenko, Oleg Ruchayskiy, Yuki Manabe, Sergey E. Ulin, N. Kondrateva, Adele Lauria, D. Kolev, Ciro Visone, Maksym Ovchynnikov, A. Pastore, J.-K. Woo, C. Kamiscioglu, G. Rosa, A. Korzenev, Sandro Cadeddu, T. Ruf, T. Shchedrina, Mario Campanelli, Nobuko Kitagawa, N. Di Marco, Yosuke Suzuki, E. Lopez Sola, Marco Calviani, A. De Roeck, S. Nasybulin, C. S. Yoon, J. Y. Sohn, Yu. Zaytsev, Tiziano Rovelli, M. Chernyavskiy, Verena Kain, S. Than Naing, O. Lantwin, G. M. Dallavalle, G. Lanfranchi, Mikhail V. Gorshenkov, P. Venkova, G. Granich, J. L. Tastet, Lesya Shchutska, Nikolaos Charitonidis, J.-M. Lévy, Vladimir Samsonov, J. De Carvalho Saraiva, Stefano Sgobba, N. Owtscharenko, Inar Timiryasov, D. Breton, A. Golovatiuk, J.-W. Ko, Nicola Serra, A. A. Rademakers, S. Bieschke, V. Drohan, Giuliana Galati, G. Haefeli, J. Bauche, P. Chau, Volodymyr Rodin, A. Sanz Ull, Nicola D'Ambrosio, K.-Y. Choi, I. Berezkina, M. Casolino, S. Buontempo, A.S. Novikov, J. Ebert, E. Koukovini Platia, John Osborne, Victor Maleev, Kang Young Lee, T. Fukuda, H. Hakobyan, Richard Brenner, P. Dergachev, A.B. Rodrigues Cavalcante, Anne-Marie Magnan, Mitsuhiro Nakamura, Z. M. Uteshev, Maria Cristina Montesi, K. Kodama, A. S. Chepurnov, A.V. Etenko, Matthew Fraser, F. Vannucci, S. Ricciardi, P. Wertelaers, G. L. Petkov, Fedor Ratnikov, V. Venturi, Y. Berdnikov, Valeri Tioukov, Samuel Silverstein, B. Storaci, J. Maalmi, A. Saputi, P. Dipinto, Alessandro Montanari, E. S. Savchenko, R. A. Fini, M. de Magistris, Andrey Ustyuzhanin, B. Opitz, Konstantinos Petridis, M. Bogomilov, I. Korol’ko, Brennan Goddard, Markus Cristinziani, Stefania Xella, Patrick Owen, David Milstead, Antonio Perillo-Marcone, Alexander E. Shustov, A. M. Guler, M. Torii, E. van Herwijnen, Gareth J. Barker, Seok Kim, Hans Dijkstra, A. Mefodev, D. Yilmaz, Sung Keun Park, T. Enik, I. Zarubina, D. Domenici, E. Kurbatov, S. Dmitrievskiy, S. Kormannshaus, K. Kershaw, Valery V. Dmitrenko, A. L. Grandchamp, P. Kurbatov, Davide Tommasini, R. Brundler, A. Alexandrov, Patrick Robbe, A. Hollnagel, V. P. Loschiavo, D. Grenier, Ekaterina Kuznetsova, Maria Elena Stramaglia, A. Sokolenko, Yuri Gornushkin, P. Pacholek, Oleg Fedin, Mauro Villa, P. Zarubin, V. Gentile, Rocco Paparella, M. Bertani, Serge Smirnov, V. Poliakov, C. Franco, T. Rawlings, D. De Simone, Caren Hagner, Arnaud Dubreuil, D. A. Podgrudkov, B. Obinyakov, V.D. Samoylenko, P. Teterin, F. Sanchez Galan, Laura Fabbri, Yu. G. Kudenko, Mikhail Hushchyn, V. Shevchenko, M. Manfredi, Alexander E. Volkov, Iaroslava Bezshyiko, Daniel Treille, R. Tsenov, J. Prieto Prieto, G. Khoriauli, N. Konovalova, Heinz Vincke, Konstantin F. Vlasik, M. Jonker, V. Kolosov, V. E. Lyubovitskij, S. V. Donskov, A. Rakai, N. I. Starkov, Y. Muttoni, F. Redi, G. Bencivenni, J. Gall, A. Khotyantsev, T. M. Roganova, F. L. Fabbri, A. Quercia, E. Solodko, A. Datwyler, N. Azorskiy, R. Voronkov, Oleg Bezshyyko, G. Felici, J. Chauveau, Yeong Gyun Kim, John Back, Raffaele Albanese, S. Shirobokov, Shigeki Aoki, V. Grichine, A. Kono, N. Gruzinskii, J. Borburgh, A. Kolesnikov, G. Vankova-Kirilova, Masahiro Komatsu, G. Khaustov, A. Chumakov, M. D. Skorokhvatov, Michael Wurm, A. Dolmatov, Viktor Rodin, M. Prokudin, S. Marsh, S. Ogawa, M. Battistin, Marco Bruschi, N. Okateva, A. Di Crescenzo, I. Korol, Alexey Boyarsky, Naotaka Naganawa, J.-L. Grenard, Rosa Simoniello, Paolo Ciambrone, A. M. Anokhina, M. Patel, Petr Andreevich Gorbounov, Giuseppe Iaselli, V. Kurochka, Elena Graverini, Alexander Baranov, A. Shakin, F. Fedotovs, Laboratoire de l'Accélérateur Linéaire (LAL), Université Paris-Sud - Paris 11 (UP11)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), Laboratoire de Physique Nucléaire et de Hautes Énergies (LPNHE (UMR_7585)), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris Diderot - Paris 7 (UPD7)-Sorbonne Université (SU)-Centre National de la Recherche Scientifique (CNRS), SHiP, Ahdida, C., Albanese, R., Alexandrov, A., Anokhina, A., Aoki, S., Arduini, G., Atkin, E., Azorskiy, N., Back, J. J., Bagulya, A., Santos, F. Baaltasar Do, Baranov, A., Bardou, F., Barker, G. J., Battistin, M., Bauche, J., Bay, A., Bayliss, V., Bencivenni, G., Berdnikov, A. Y., Berdnikov, Y. A., Berezkina, I., Bertani, M., Betancourt, C., Bezshyiko, I., Bezshyyko, O., Bick, D., Bieschke, S., Blanco, A., Boehm, J., Bogomilov, M., Bondarenko, K., Bonivento, W. M., Borburgh, J., Boyarsky, A., Brenner, R., Breton, D., Brundler, R., Bruschi, M., Büscher, V., Buonaura, A., Buontempo, S., Cadeddu, S., Calcaterra, A., Calviani, M., Campanelli, M., Casolino, M., Charitonidis, N., Chau, P., Chauveau, J., Chepurnov, A., Chernyavskiy, M., Choi, K. -Y., Chumakov, A., Ciambrone, P., Cornelis, K., Cristinziani, M., Crupano, A., Dallavalle, G. M., Datwyler, A., D'Ambrosio, N., D'Appollonio, G., Saraiva, J. De Carvalho, Lellis, G. De, de Magistris, M., Roeck, A. De, Serio, M. De, Simone, D. De, Dedenko, L., Dergachev, P., Crescenzo, A. Di, Marco, N. Di, Dib, C., Dijkstra, H., Dipinto, P., Dmitrenko, V., Dmitrievskiy, S., Dougherty, L. A., Dolmatov, A., Domenici, D., Donskov, S., Drohan, V., Dubreuil, A., Ebert, J., Enik, T., Etenko, A., Fabbri, F., Fabbri, L., Fabich, A., Fedin, O., Fedotovs, F., Felici, G., Ferro-Luzzi, M., Filippov, K., Fini, R. A., Fonte, P., Franco, C., Fraser, M., Fresa, R., Froeschl, R., Fukuda, T., Galati, G., Gall, J., Gatignon, L., Gavrilov, G., Gentile, V., Goddard, B., Golinka-Bezshyyko, L., Golovatiuk, A., Golubkov, D., Golutvin, A., Gorbounov, P., Gorbunov, D., Gorbunov, S., Gorkavenko, V., Gornushkin, Y., Gorshenkov, M., Grachev, V., Grandchamp, A. L., Granich, G., Graverini, E., Grenard, J. -L., Grenier, D., Grichine, V., Gruzinskii, N., Guler, A. M., Guz, Yu., Haefeli, G. J., Hagner, C., Hakobyan, H., Harris, I. W., Herwijnen, E. van, Hessler, C., Hollnagel, A., Hosseini, B., Hushchyn, M., Iaselli, G., Iuliano, A., Ivantchenko, V., Jacobsson, R., Joković, D., Jonker, M., Kadenko, I., Kain, V., Kamiscioglu, C., Kershaw, K., Khabibullin, M., Khalikov, E., Khaustov, G., Khoriauli, G., Khotyantsev, A., Kim, S. H., Kim, Y. G., Kim, V., Kitagawa, N., Ko, J. -W., Kodama, K., Kolesnikov, A., Kolev, D. I., Kolosov, V., Komatsu, M., Kondrateva, N., Kono, A., Konovalova, N., Kormannshaus, S., Korol, I., Korol'Ko, I., Korzenev, A., Kostyukhin, V., Platia, E. Koukovini, Kovalenko, S., Krasilnikova, I., Kudenko, Y., Kurbatov, E., Kurbatov, P., Kurochka, V., Kuznetsova, E., Lacker, H. M., Lamont, M., Lanfranchi, G., Lantwin, O., Lauria, A., Lee, K. S., Lee, K. Y., Lévy, J. -M., Loschiavo, V. P., Lopes, L., Sola, E. Lopez, Lyubovitskij, V., Maalmi, J., Magnan, A., Maleev, V., Malinin, A., Manabe, Y., Managadze, A. K., Manfredi, M., Marsh, S., Marshall, A. M., Mefodev, A., Mermod, P., Miano, A., Mikado, S., Mikhaylov, Yu., Milstead, D. A., Mineev, O., Montanari, A., Montesi, M. C., Morishima, K., Movchan, S., Muttoni, Y., Naganawa, N., Nakamura, M., Nakano, T., Nasybulin, S., Ninin, P., Nishio, A., Novikov, A., Obinyakov, B., Ogawa, S., Okateva, N., Opitz, B., Osborne, J., Ovchynnikov, M., Owtscharenko, N., Owen, P. H., Pacholek, P., Paoloni, A., Paparella, R., Park, B. D., Park, S. K., Pastore, A., Patel, M., Pereyma, D., Perillo-Marcone, A., Petkov, G. L., Petridis, K., Petrov, A., Podgrudkov, D., Poliakov, V., Polukhina, N., Prieto, J. Prieto, Prokudin, M., Prota, A., Quercia, A., Rademakers, A., Rakai, A., Ratnikov, F., Rawlings, T., Redi, F., Ricciardi, S., Rinaldesi, M., Rodin, Volodymyr, Rodin, Viktor, Robbe, P., Cavalcante, A. B. Rodrigue, Roganova, T., Rokujo, H., Rosa, G., Rovelli, T., Ruchayskiy, O., Ruf, T., Samoylenko, V., Samsonov, V., Galan, F. Sanchez, Diaz, P. Santo, Ull, A. Sanz, Saputi, A., Sato, O., Savchenko, E. S., Schmidt-Parzefall, W., Serra, N., Sgobba, S., Shadura, O., Shakin, A., Shaposhnikov, M., Shatalov, P., Shchedrina, T., Shchutska, L., Shevchenko, V., Shibuya, H., Shirobokov, S., Shustov, A., Silverstein, S. B., Simone, S., Simoniello, R., Skorokhvatov, M., Smirnov, S., Sohn, J. Y., Sokolenko, A., Solodko, E., Starkov, N., Stoel, L., Storaci, B., Stramaglia, M. E., Sukhonos, D., Suzuki, Y., Takahashi, S., Tastet, J. L., Teterin, P., Naing, S. Than, Timiryasov, I., Tioukov, V., Tommasini, D., Torii, M., Tosi, N., Treille, D., Tsenov, R., Ulin, S., Ustyuzhanin, A., Uteshev, Z., Vankova-Kirilova, G., Vannucci, F., Venkova, P., Venturi, V., Vilchinski, S., Villa, M., Vincke, Heinz, Vincke, Helmut, Visone, C., Vlasik, K., Volkov, A., Voronkov, R., Waasen, S. van, Wanke, R., Wertelaers, P., Woo, J. -K., Wurm, M., Xella, S., Yilmaz, D., Yilmazer, A. U., Yoon, C. S., Zarubin, P., Zarubina, I., Zaytsev, Yu., Centre National de la Recherche Scientifique (CNRS)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris-Sud - Paris 11 (UP11), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Sorbonne Université (SU)-Centre National de la Recherche Scientifique (CNRS)-Université de Paris (UP), Ahdida C., Albanese R., Alexandrov A., Anokhina A., Aoki S., Arduini G., Atkin E., Azorskiy N., Back J.J., Bagulya A., Santos F.B.D., Baranov A., Bardou F., Barker G.J., Battistin M., Bauche J., Bay A., Bayliss V., Bencivenni G., Berdnikov A.Y., Berdnikov Y.A., Berezkina I., Bertani M., Betancourt C., Bezshyiko I., Bezshyyko O., Bick D., Bieschke S., Blanco A., Boehm J., Bogomilov M., Bondarenko K., Bonivento W.M., Borburgh J., Boyarsky A., Brenner R., Breton D., Brundler R., Bruschi M., Buscher V., Buonaura A., Buontempo S., Cadeddu S., Calcaterra A., Calviani M., Campanelli M., Casolino M., Charitonidis N., Chau P., Chauveau J., Chepurnov A., Chernyavskiy M., Choi K.-Y., Chumakov A., Ciambrone P., Cornelis K., Cristinziani M., Crupano A., Dallavalle G.M., Datwyler A., D'ambrosio N., D'appollonio G., Saraiva J.D.C., Lellis G.D., De Magistris M., Roeck A.D., De Serio M., De Simone D., Dedenko L., Dergachev P., Di Crescenzo A., Di Marco N., Dib C., Dijkstra H., Dipinto P., Dmitrenko V., Dmitrievskiy S., Dougherty L.A., Dolmatov A., Domenici D., Donskov S., Drohan V., Dubreuil A., Ebert J., Enik T., Etenko A., Fabbri F., Fabbri L., Fabich A., Fedin O., Fedotovs F., Felici G., Ferro-Luzzi M., Filippov K., Fini R.A., Fonte P., Franco C., Fraser M., Fresa R., Froeschl R., Fukuda T., Galati G., Gall J., Gatignon L., Gavrilov G., Gentile V., Goddard B., Golinka-Bezshyyko L., Golovatiuk A., Golubkov D., Golutvin A., Gorbounov P., Gorbunov D., Gorbunov S., Gorkavenko V., Gornushkin Y., Gorshenkov M., Grachev V., Grandchamp A.L., Granich G., Graverini E., Grenard J.-L., Grenier D., Grichine V., Gruzinskii N., Guler A.M., Guz Y., Haefeli G.J., Hagner C., Hakobyan H., Harris I.W., Van Herwijnen E., Hessler C., Hollnagel A., Hosseini B., Hushchyn M., Iaselli G., Iuliano A., Ivantchenko V., Jacobsson R., Jokovic D., Jonker M., Kadenko I., Kain V., Kamiscioglu C., Kershaw K., Khabibullin M., Khalikov E., Khaustov G., Khoriauli G., Khotyantsev A., Kim S.H., Kim Y.G., Kim V., Kitagawa N., Ko J.-W., Kodama K., Kolesnikov A., Kolev D.I., Kolosov V., Komatsu M., Kondrateva N., Kono A., Konovalova N., Kormannshaus S., Korol I., Korol'ko I., Korzenev A., Kostyukhin V., Platia E.K., Kovalenko S., Krasilnikova I., Kudenko Y., Kurbatov E., Kurbatov P., Kurochka V., Kuznetsova E., Lacker H.M., Lamont M., Lanfranchi G., Lantwin O., Lauria A., Lee K.S., Lee K.Y., Levy J.-M., Loschiavo V.P., Lopes L., Sola E.L., Lyubovitskij V., Maalmi J., Magnan A., Maleev V., Malinin A., Manabe Y., Managadze A.K., Manfredi M., Marsh S., Marshall A.M., Mefodev A., Mermod P., Miano A., Mikado S., Mikhaylov Y., Milstead D.A., Mineev O., Montanari A., Montesi M.C., Morishima K., Movchan S., Muttoni Y., Naganawa N., Nakamura M., Nakano T., Nasybulin S., Ninin P., Nishio A., Novikov A., Obinyakov B., Ogawa S., Okateva N., Opitz B., Osborne J., Ovchynnikov M., Owtscharenko N., Owen P.H., Pacholek P., Paoloni A., Paparella R., Park B.D., Park S.K., Pastore A., Patel M., Pereyma D., Perillo-Marcone A., Petkov G.L., Petridis K., Petrov A., Podgrudkov D., Poliakov V., Polukhina N., Prieto J.P., Prokudin M., Prota A., Quercia A., Rademakers A., Rakai A., Ratnikov F., Rawlings T., Redi F., Ricciardi S., Rinaldesi M., Rodin V., Robbe P., Rodrigues Cavalcante A.B., Roganova T., Rokujo H., Rosa G., Rovelli T., Ruchayskiy O., Ruf T., Samoylenko V., Samsonov V., Sanchez Galan F., Santos Diaz P., Sanz Ull A., Saputi A., Sato O., Savchenko E.S., Schmidt-Parzefall W., Serra N., Sgobba S., Shadura O., Shakin A., Shaposhnikov M., Shatalov P., Shchedrina T., Shchutska L., Shevchenko V., Shibuya H., Shirobokov S., Shustov A., Silverstein S.B., Simone S., Simoniello R., Skorokhvatov M., Smirnov S., Sohn J.Y., Sokolenko A., Solodko E., Starkov N., Stoel L., Storaci B., Stramaglia M.E., Sukhonos D., Suzuki Y., Takahashi S., Tastet J.L., Teterin P., Than Naing S., Timiryasov I., Tioukov V., Tommasini D., Torii M., Tosi N., Treille D., Tsenov R., Ulin S., Ustyuzhanin A., Uteshev Z., Vankova-Kirilova G., Vannucci F., Venkova P., Venturi V., Vilchinski S., Villa M., Vincke H., Visone C., Vlasik K., Volkov A., Voronkov R., Van Waasen S., Wanke R., Wertelaers P., Woo J.-K., Wurm M., Xella S., Yilmaz D., Yilmazer A.U., Yoon C.S., Zarubin P., Zarubina I., and Yu Zaytsev Y.
- Subjects
Technology ,Physics - Instrumentation and Detectors ,background: induced ,large detector systems for particle and astroparticle physics ,SPS ,beam transport ,Electron ,7. Clean energy ,01 natural sciences ,09 Engineering ,dark matter detectors (wimps, axions etc.) ,High Energy Physics - Experiment ,030218 nuclear medicine & medical imaging ,law.invention ,Neutrino detector ,High Energy Physics - Experiment (hep-ex) ,0302 clinical medicine ,Recoil ,law ,etc.) ,[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex] ,Neutrino detectors ,Detectors and Experimental Techniques ,Nuclear Experiment ,physics.ins-det ,Instruments & Instrumentation ,Instrumentation ,background: suppression ,Mathematical Physics ,nucleus: recoil ,Physics ,Range (particle radiation) ,tau neutrino ,02 Physical Sciences ,Large Hadron Collider ,beam loss ,Instrumentation and Detectors (physics.ins-det) ,p: beam ,Nuclear & Particles Physics ,vacuum system ,particle: interaction ,Dark Matter detectors (WIMP ,beam optics ,p: beam dump ,Physics - Instrumentation and Detector ,proposed experiment ,Particle Physics - Experiment ,zirconium: admixture ,FOS: Physical sciences ,Accelerator Physics and Instrumentation ,beam: ejection ,p: target ,Hidden Sector ,Nuclear physics ,KKKK: SHiP ,03 medical and health sciences ,0103 physical sciences ,[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det] ,Beam dump ,numerical calculations ,muon: shielding ,detector: design ,activity report ,Dark Matter detectors (WIMPs ,Science & Technology ,hep-ex ,010308 nuclear & particles physics ,Large detector systems for particle and astroparticle physics ,beam-dump facility ,Acceleratorfysik och instrumentering ,CERN SPS ,Hidden sector ,axion ,axions etc.) ,Large detector systems for particle and astroparticle physic ,molybdenum: alloy ,Physics::Accelerator Physics ,target: design ,titanium: admixture ,Beam (structure) ,neutrino detectors - Abstract
The Search for Hidden Particles (SHiP) Collaboration has shown that the CERN SPS accelerator with its 400 $\mathrm{\small GeV/c}$ proton beam offers a unique opportunity to explore the Hidden Sector. The proposed experiment is an intensity frontier experiment which is capable of searching for hidden particles through both visible decays and through scattering signatures from recoil of electrons or nuclei. The high-intensity experimental facility developed by the SHiP collaboration is based on a number of key features and developments which provide the possibility of probing a large part of the parameter space for a wide range of models with light long-lived superweakly interacting particles with masses up to O(10) $\mathrm{\small GeV/c^2}$ in an environment of extremely clean background conditions. This paper describes the proposal for the experimental facility together with the most important feasibility studies. The paper focuses on the challenging new ideas behind the beam extraction and beam delivery, the proton beam dump, and the suppression of beam-induced background., 21 pages
- Published
- 2019
42. Measurement of the muon flux from 400 GeV/c protons interacting in a thick molybdenum/tungsten target
- Author
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V. Bayliss, Gareth J. Barker, L. Stoel, Volker Büscher, Alexey Volkov, Satoru Takahashi, Nobuko Kitagawa, G. M. Dallavalle, J.-K. Woo, Sandro Cadeddu, V. Gentile, Nicola Serra, K.Y. Lee, Mike Lamont, K. S. Lee, C. Hessler, A. Berdnikov, D. De Simone, A. Rakai, I. W. Harris, D. Karpenkov, D. Joković, S. Gorbunov, E. Elikkaya, Sergey Kovalenko, L. Gatignon, Volodymyr Rodin, R. Voronkov, I. Kadenko, L. Shihora, M. De Serio, E. Kurbatov, M. Bertani, F. Sanchez Galan, Stefano Sgobba, A. Akmete, Oleg Bezshyyko, D. Kolev, C. Kamiscioglu, C. Ahdida, Yu. Mikhaylov, Heiko Lacker, Dmitry Golubkov, Philippe Mermod, A. K. Managadze, R. A. Fini, M. Rinaldesi, Oksana Shadura, L. A. Dougherty, S. Dmitrievskiy, Davide Tommasini, A. Bay, Raffaele Albanese, S. Shirobokov, F. Baaltasar Dos Santos, V.N. Kolosov, Anne-Marie Magnan, Shigeki Aoki, D. Grenier, A. Sanz Ull, R. de Asmundis, Toshiyuki Nakano, T. Ruf, G. Khoriauli, Konstantin F. Vlasik, S. Kormannshaus, K. Kershaw, A. Golutvin, V. Grichine, V. Poliakov, V. Venturi, V. Tioukov, Stefania Xella, Fabrizio Fabbri, D. Breton, E. Lopez Sola, G. Lanfranchi, N. Di Marco, B. Kaiser, M. Manfredi, J. Bauche, P. Santos Diaz, Lesya Shchutska, A. Blanco, A. Di Crescenzo, Heinz Vincke, Yu. Guz, Victor Kim, Mikhail V. Gorshenkov, Volodymyr M. Gorkavenko, David Milstead, A. Alexandrov, Nikolaos Charitonidis, Alexander Malinin, Caren Hagner, Vadim Kostyukhin, Alexey A. Petrov, Mitsuhiro Nakamura, S. van Waasen, Serge Smirnov, Kunihiro Morishima, Andrea Prota, Y. Berdnikov, P. Wertelaers, V.D. Samoylenko, I. Korol, J. Prieto Prieto, M. de Magistris, Helmut Vincke, Brennan Goddard, Alexey Boyarsky, S. V. Donskov, T. Enik, J. S. Schliwinski, Rainer Wanke, Tiziano Rovelli, Nicolò Tosi, L. Golinka-Bezshyyko, M. M. Khabibullin, J. Chauveau, Matthew Fraser, F. Vannucci, John Back, N. Owtscharenko, Karel Cornelis, F. Bardou, A. Sokolenko, Alexander E. Shustov, H. Shibuya, A. Mefodev, Hans Dijkstra, Inar Timiryasov, Fedor Ratnikov, Samuel Silverstein, N. Konovalova, S. Vilchinski, Giuliana Galati, G. Haefeli, P. Ninin, N. I. Starkov, J. Maalmi, N. Gruzinskii, B. D. Park, M. Casolino, D. Sukhonos, Z. M. Uteshev, Osamu Sato, Dmitry Gorbunov, A. Kolesnikov, T. Rawlings, P. Kurbatov, Arnaud Dubreuil, T. Shchedrina, Adele Lauria, A. L. Grandchamp, S. Ricciardi, Andrea Miano, Iaroslava Bezshyiko, Paolo Ciambrone, A. S. Chepurnov, T. M. Roganova, D. Domenici, Martina Ferrillo, Masahiro Komatsu, G. L. Petkov, Alessandro Montanari, E. S. Savchenko, Alessandro Paoloni, Iryna Boiarska, M. Bogomilov, V. P. Loschiavo, Maksym Ovchynnikov, Ekaterina Kuznetsova, Yu.A. Kudenko, M. Ferro-Luzzi, Gianluigi Arduini, Marco Calviani, C. Franco, L. G. Dedenko, M. Jonker, A. Chumakov, A. Quercia, E. Solodko, V. E. Lyubovitskij, K. Kodama, Vladimir Shevchenko, Natalia Polukhina, Oleg Ruchayskiy, Maria Elena Stramaglia, Ciro Visone, Oleg Fedin, P. Teterin, Oleg Mineev, A. Bagulya, R. Tsenov, Oliver Lantwin, J.-W. Ko, V. M. Grachev, Akira Nishio, Hiroki Rokujo, S. Movchan, Markus Cristinziani, O. Williams, Yu. Zaytsev, Antonio Perillo-Marcone, J.-M. Lévy, J. L. Tastet, A. Datwyler, Liliana Congedo, N. Azorskiy, G. Vankova-Kirilova, L. Lopes, Viktor Rodin, John Osborne, Victor Maleev, Patrick Owen, P. Fonte, M. Chernyavskiy, A. Korzenev, Y. Muttoni, F. Redi, E. Khalikov, O. Durhan, G. Bencivenni, M. Battistin, Alexander Mclean Marshall, A. Pastore, S. Nasybulin, J. Zimmerman, K.-Y. Choi, J. Gall, G. Rosa, P. Chau, A. A. Rademakers, E. van Herwijnen, D. Yilmaz, A. M. Anokhina, M. Patel, S. Mikado, A. Khotyantsev, Yuki Manabe, J. Y. Sohn, N. Okateva, Petr Andreevich Gorbounov, S. Than Naing, Giuseppe Iaselli, V. Kurochka, A. Shakin, A.U. Yilmazer, Nicola D'Ambrosio, F. Fedotovs, Giuseppe D'Appollonio, G.V. Khaustov, Raffaele Fresa, A. De Roeck, Alexander Baranov, R. Jacobsson, D. Pereyma, M. Ehlert, K. Filippov, Yosuke Suzuki, J. Boehm, J. De Carvalho Saraiva, A. Crupano, A. Calcaterra, D. Bick, W. Schmidt-Parzefall, S. Buontempo, A.S. Novikov, E. Koukovini Platia, A. Golovatiuk, Verena Kain, Claudio O. Dib, G. De Lellis, T. Fukuda, H. Hakobyan, Richard Brenner, G. Gavrilov, Elena Graverini, Y.G. Kim, Naotaka Naganawa, V. Drohan, A. Iuliano, Annarita Buonaura, S. Simone, Christopher Betancourt, Pavel Shatalov, R. Froeschl, E. V. Atkin, B. Hosseini, J.-L. Grenard, Rosa Simoniello, M. D. Skorokhvatov, Michael Wurm, A. Dolmatov, E. Ursov, Sergey E. Ulin, S. Ogawa, Mario Campanelli, Vladimir Samsonov, P. Dergachev, A.B. Rodrigues Cavalcante, A. Saputi, B. Opitz, Konstantinos Petridis, D. A. Podgrudkov, B. Obinyakov, Mikhail Hushchyn, Andrey Ustyuzhanin, Daniel Treille, A. M. Guler, V. Cicero, C. S. Yoon, S. Bieschke, Valery V. Dmitrenko, Patrick Robbe, A. Hollnagel, Maria Cristina Montesi, I. Korol’ko, M. Torii, P. Pacholek, L. Di Giulio, G. Felici, A. Kono, J. Borburgh, M. Prokudin, S. Marsh, W. Bonivento, I. Krasilnikova, Kyrylo Bondarenko, Mikhail Shaposhnikov, A.V. Etenko, Laboratoire de l'Accélérateur Linéaire (LAL), Centre National de la Recherche Scientifique (CNRS)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris-Sud - Paris 11 (UP11), Laboratoire de Physique Nucléaire et de Hautes Énergies (LPNHE (UMR_7585)), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Sorbonne Université (SU)-Centre National de la Recherche Scientifique (CNRS)-Université de Paris (UP), SHiP, Ahdida, C., Akmete, A., Albanese, R., Alexandrov, A., Anokhina, A., Aoki, S., Arduini, G., Atkin, E., Azorskiy, N., Back, J. J., Bagulya, A., Santos, F. Baaltasar Do, Baranov, A., Bardou, F., Barker, G. J., Battistin, M., Bauche, J., Bay, A., Bayliss, V., Bencivenni, G., Berdnikov, A. Y., Berdnikov, Y. A., Bertani, M., Betancourt, C., Bezshyiko, I., Bezshyyko, O., Bick, D., Bieschke, S., Blanco, A., Boehm, J., Bogomilov, M., Boiarska, I., Bondarenko, K., Bonivento, W. M., Borburgh, J., Boyarsky, A., Brenner, R., Breton, D., Büscher, V., Buonaura, A., Buontempo, S., Cadeddu, S., Calcaterra, A., Calviani, M., Campanelli, M., Casolino, M., Charitonidis, N., Chau, P., Chauveau, J., Chepurnov, A., Chernyavskiy, M., Choi, K. -Y., Chumakov, A., Ciambrone, P., Cicero, V., Congedo, L., Cornelis, K., Cristinziani, M., Crupano, A., Dallavalle, G. M., Datwyler, A., D’Ambrosio, N., D’Appollonio, G., de Asmundis, R., De Carvalho Saraiva, J., De Lellis, G., de Magistris, M., De Roeck, A., De Serio, M., De Simone, D., Dedenko, L., Dergachev, P., Crescenzo, A. Di, Giulio, L. Di, Marco, N. Di, Dib, C., Dijkstra, H., Dmitrenko, V., Dmitrievskiy, S., Dougherty, L. A., Dolmatov, A., Domenici, D., Donskov, S., Drohan, V., Dubreuil, A., Durhan, O., Ehlert, M., Elikkaya, E., Enik, T., Etenko, A., Fabbri, F., Fedin, O., Fedotovs, F., Felici, G., Ferrillo, M., Ferro-Luzzi, M., Filippov, K., Fini, R. A., Fonte, P., Franco, C., Fraser, M., Fresa, R., Froeschl, R., Fukuda, T., Galati, G., Gall, J., Gatignon, L., Gavrilov, G., Gentile, V., Goddard, B., Golinka-Bezshyyko, L., Golovatiuk, A., Golubkov, D., Golutvin, A., Gorbounov, P., Gorbunov, D., Gorbunov, S., Gorkavenko, V., Gorshenkov, M., Grachev, V., Grandchamp, A. L., Graverini, E., Grenard, J. -L., Grenier, D., Grichine, V., Gruzinskii, N., Guler, A. M., Guz, Yu., Haefeli, G. J., Hagner, C., Hakobyan, H., Harris, I. W., Herwijnen, E. van, Hessler, C., Hollnagel, A., Hosseini, B., Hushchyn, M., Iaselli, G., Iuliano, A., Jacobsson, R., Joković, D., Jonker, M., Kadenko, I., Kain, V., Kaiser, B., Kamiscioglu, C., Karpenkov, D., Kershaw, K., Khabibullin, M., Khalikov, E., Khaustov, G., Khoriauli, G., Khotyantsev, A., Kim, Y. G., Kim, V., Kitagawa, N., Ko, J. -W., Kodama, K., Kolesnikov, A., Kolev, D. I., Kolosov, V., Komatsu, M., Kono, A., Konovalova, N., Kormannshaus, S., Korol, I., Korol’Ko, I., Korzenev, A., Kostyukhin, V., Platia, E. Koukovini, Kovalenko, S., Krasilnikova, I., Kudenko, Y., Kurbatov, E., Kurbatov, P., Kurochka, V., Kuznetsova, E., Lacker, H. M., Lamont, M., Lanfranchi, G., Lantwin, O., Lauria, A., Lee, K. S., Lee, K. Y., Lévy, J. -M., Loschiavo, V. P., Lopes, L., Sola, E. Lopez, Lyubovitskij, V., Maalmi, J., Magnan, A., Maleev, V., Malinin, A., Manabe, Y., Managadze, A. K., Manfredi, M., Marsh, S., Marshall, A. M., Mefodev, A., Mermod, P., Miano, A., Mikado, S., Mikhaylov, Yu., Milstead, D. A., Mineev, O., Montanari, A., Montesi, M. C., Morishima, K., Movchan, S., Muttoni, Y., Naganawa, N., Nakamura, M., Nakano, T., Nasybulin, S., Ninin, P., Nishio, A., Novikov, A., Obinyakov, B., Ogawa, S., Okateva, N., Opitz, B., Osborne, J., Ovchynnikov, M., Owtscharenko, N., Owen, P. H., Pacholek, P., Paoloni, A., Park, B. D., Pastore, A., Patel, M., Pereyma, D., Perillo-Marcone, A., Petkov, G. L., Petridis, K., Petrov, A., Podgrudkov, D., Poliakov, V., Polukhina, N., Prieto, J. Prieto, Prokudin, M., Prota, A., Quercia, A., Rademakers, A., Rakai, A., Ratnikov, F., Rawlings, T., Redi, F., Ricciardi, S., Rinaldesi, M., Rodin, Volodymyr, Rodin, Viktor, Robbe, P., Cavalcante, A. B. Rodrigue, Roganova, T., Rokujo, H., Rosa, G., Rovelli, T., Ruchayskiy, O., Ruf, T., Samoylenko, V., Samsonov, V., Galan, F. Sanchez, Diaz, P. Santo, Ull, A. Sanz, Saputi, A., Sato, O., Savchenko, E. S., Schliwinski, J. S., Schmidt-Parzefall, W., Serra, N., Sgobba, S., Shadura, O., Shakin, A., Shaposhnikov, M., Shatalov, P., Shchedrina, T., Shchutska, L., Shevchenko, V., Shibuya, H., Shihora, L., Shirobokov, S., Shustov, A., Silverstein, S. B., Simone, S., Simoniello, R., Skorokhvatov, M., Smirnov, S., Sohn, J. Y., Sokolenko, A., Solodko, E., Starkov, N., Stoel, L., Stramaglia, M. E., Sukhonos, D., Suzuki, Y., Takahashi, S., Tastet, J. L., Teterin, P., Naing, S. Than, Timiryasov, I., Tioukov, V., Tommasini, D., Torii, M., Tosi, N., Treille, D., Tsenov, R., Ulin, S., Ursov, E., Ustyuzhanin, A., Uteshev, Z., Vankova-Kirilova, G., Vannucci, F., Venturi, V., Vilchinski, S., Vincke, Heinz, Vincke, Helmut, Visone, C., Vlasik, K., Volkov, A., Voronkov, R., Waasen, S. van, Wanke, R., Wertelaers, P., Williams, O., Woo, J. -K., Wurm, M., Xella, S., Yilmaz, D., Yilmazer, A. U., Yoon, C. S., Zaytsev, Yu., and Zimmerman, J.
- Subjects
Physics and Astronomy (miscellaneous) ,Proton ,drift tube ,Physics::Instrumentation and Detectors ,Hadron ,Monte Carlo method ,Tungsten ,01 natural sciences ,law.invention ,Physics, Particles & Fields ,Subatomär fysik ,iron ,molybdenum ,law ,Subatomic Physics ,[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex] ,Detectors and Experimental Techniques ,Nuclear Experiment ,Physics ,Large Hadron Collider ,new physics ,400 GeV/c ,p: interaction ,Nuclear & Particles Physics ,particle: interaction ,Physical Sciences ,0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics ,GEANT ,p: beam dump ,numerical calculations: Monte Carlo ,Particle Physics - Experiment ,chemistry.chemical_element ,muon: particle identification ,lcsh:Astrophysics ,[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex] ,Nuclear physics ,tungsten: target ,0103 physical sciences ,lcsh:QB460-466 ,p: beam transport ,muon: flux: measured ,Nuclear Physics - Experiment ,lcsh:Nuclear and particle physics. Atomic energy. Radioactivity ,ddc:530 ,Beam dump ,010306 general physics ,Engineering (miscellaneous) ,0206 Quantum Physics ,Muon ,Science & Technology ,Spectrometer ,010308 nuclear & particles physics ,background ,CERN SPS ,chemistry ,interaction: length ,lcsh:QC770-798 ,Physics::Accelerator Physics ,High Energy Physics::Experiment ,experimental results ,muon: momentum spectrum ,muon: spectrometer - Abstract
The SHiP experiment is proposed to search for very weakly interacting particles beyond the Standard Model which are produced in a 400 GeV/$c$ proton beam dump at the CERN SPS. About $10^{11}$ muons per spill will be produced in the dump. To design the experiment such that the muon-induced background is minimized, a precise knowledge of the muon spectrum is required. To validate the muon flux generated by our Pythia and GEANT4 based Monte Carlo simulation (FairShip), we have measured the muon flux emanating from a SHiP-like target at the SPS. This target, consisting of 13 interaction lengths of slabs of molybdenum and tungsten, followed by a 2.4 m iron hadron absorber was placed in the H4 400 GeV/$c$ proton beam line. To identify muons and to measure the momentum spectrum, a spectrometer instrumented with drift tubes and a muon tagger were used. During a three-week period a dataset for analysis corresponding to $(3.27\pm0.07)~\times~10^{11}$ protons on target was recorded. This amounts to approximatively 1% of a SHiP spill. The SHiP experiment will search for very weakly interacting particles beyond the Standard Model which are produced in a 400 \GeV/$c$ proton beam dump at the CERN SPS. About $10^{11}$ muons per spill will be produced in the dump. To design the experiment such that the muon-induced background is minimized, a precise knowledge of the muon spectrum is required. To validate the muon flux generated by our Pythia and GEANT4 based Monte Carlo simulation (FairShip), we have measured the muon flux emanating from a SHiP-like target at the SPS. This target, consisting of 13 interaction lengths of slabs of molybdenum and tungsten, followed by a 2.4 m iron hadron absorber was placed in the H4 400~\GeV/$c$ proton beam line. To identify muons and to measure the momentum spectrum, a spectrometer instrumented with drift tubes and a muon tagger were used. During a three-week period a dataset for analysis corresponding to $(3.27\pm0.07)~\times~10^{11}$ protons on target was recorded. This amounts to approximatively 1\% of a SHiP spill. The SHiP experiment is proposed to search for very weakly interacting particles beyond the Standard Model which are produced in a 400 GeV/c proton beam dump at the CERN SPS. About $10^{11}$ muons per spill will be produced in the dump. To design the experiment such that the muon-induced background is minimized, a precise knowledge of the muon spectrum is required. To validate the muon flux generated by our Pythia and GEANT4 based Monte Carlo simulation (FairShip), we have measured the muon flux emanating from a SHiP-like target at the SPS. This target, consisting of 13 interaction lengths of slabs of molybdenum and tungsten, followed by a 2.4 m iron hadron absorber was placed in the H4 400 GeV/c proton beam line. To identify muons and to measure the momentum spectrum, a spectrometer instrumented with drift tubes and a muon tagger were used. During a 3-week period a dataset for analysis corresponding to $(3.27\pm 0.07)~\times ~10^{11}$ protons on target was recorded. This amounts to approximatively 1% of a SHiP spill.
- Published
- 2020
43. Diagnostics and treatment of hip dysplasia and congenital hip dislocation in children
- Author
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D.V. Golovatiuk, V.N. Vityaz, O.V. Karabeniuk, and A.F. Levytskyy
- Subjects
Hip dysplasia ,medicine.medical_specialty ,business.industry ,Dislocation (syntax) ,Medicine ,business ,medicine.disease ,Surgery - Published
- 2019
44. COMPREHENSIVE NEUROMONITORING OF THE NEWBORN WITH MANIFESTATIONS OF SEVERE ASPHYXIA AND THERAPEUTIC HY
- Author
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Tarasiuk, О.В., primary, Babintseva, Anastasiya, additional, Kostiukova, Dariia, additional, and Golovatiuk, I.V., additional
- Published
- 2021
- Full Text
- View/download PDF
45. Answers to referees on SND@LHC TP
- Author
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Ahdida, C, Albanese, R, Alexandrov, A, Andreini, M, Anokhina, A, Bay, A, Bestmann, P, Betancourt, C, Bezshyiko, I, Blanco, A, Bogomilov, M, Bondarenko, K, Bonivento, W M, Boisseaux-Bourgeois, P, Boyarsky, A, Buonocore, L, Buonaura, A, Buontempo, S, Cafaro, V, Callignon, M, Camporesi, T, Campanelli, M, Canale, V, Cerutti, F, Charitonidis, N, Chernyavskiy, M, Choi, K-Y, Cholak, S, Cicero, V, Conaboy, A P, Congedo, L, Crespo, O, Cristinziani, M, Crupano, A, Dallavalle, G M, Datwyler, A, D'Ambrosio, N, Dashkina, A, De Carvalho Saraiva, J, De Bryas Dexmiers D'Archiac, P T, De Lellis, G, De Magistris, M, De Roeck, A, De Rujula, A, De Serio, M, De Simone, D, Dedenko, L, Di Crescenzo, A, Di Giulio, L, Dolmatov, A, Durhan, O, Fasanella, D, Fedotovs, F, Ferrillo, M, Ferro-Luzzi, M, Fini, R A, Fonte, P, Fresa, R, Galati, G, Gall, J, Garcia Alia, R, Gentile, V, Giordano, V, Golovatiuk, A, Golutvin, A, Gorbounov, P, Gorshenkov, M, Graverini, E, Grenard, J-L, Guler, A M, Haefeli, G J, van Herwijnen, E, Iaselli, G, Iengo, P, Ilieva, S, Infantino, A, Iuliano, A, Jacobsson, R, Jonker, M, Kamiscioglu, C, Karyotakis, Y, Khalikov, E, Kim, Y G, Kim, S H, Kolev, D I, Komatsu, M, Konovalova, N, Kovalenko, S, Krasilnikova, I, Kuleshov, S, Lacker, H M, Lantwin, O, Lauria, A, Lee, K S, Lee, K Y, Leonardo, N, Lerner, G, Lo Meo, S, Loschiavo, V P, Lopes, L, Magnan, A, Maietta, M, Malinin, A, Maurer, Y, Managadze, A K, Marsh, S, Miano, A, Mikulenko, A, Montanari, A, Montesi, M C, Naka, T, Navarria, F L, Ninin, P, Ogawa, S, Okateva, N, Osborne, J, Owtscharenko, N, Owen, P H, Ovchynnikov, M, Park, B D, Passeggio, G, Pastore, A, Patel, M, Patrizii, L, Petrov, A, Podgrudkov, D, Petkov, G L, Petridis, K, Polukhina, N, Prelipcean, D, Prota, A, Queiroz, F, Quercia, A, Ratnikov, F, Redi, F, Reghunath, A, Rodrigues Cavalcante, A B, Rodrigues Fernandez, J, Roganova, T, Rovelli, T, Ruchayskiy, O, Ruf, T, Sabate Gilarte, M, Sanchez Galan, F, Santos Diaz, P, Schneider, O, Sekhniaidze, G, Serra, N, Shaposhnikov, M, Shchedrina, T, Shchutska, L, Shevchenko, V, Shibuya, H, Shirobokov, S, Shmanin, E, Simone, S, Sirri, G, Soares, G, Sohn, J Y, Souaya, M, Starkov, N, Tastet, J L, Timiryasov, I, Tioukov, V, Tosi, N, Trippl, C, Tramontano, F, Tsenov, R, Ursov, E, Ustyuzhanin, A, Vankova-Kirilova, G, Vendeuvre, C, Visone, C, Wanke, R, Woo, J-K, Yoon, C S, Zamora-Saa, J, and Zaffaroni, E
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Detectors and Experimental Techniques - Abstract
Answers to the LHCC referees concerning the SND@LHC Technical Proposal
- Published
- 2021
46. SND@LHC - Scattering and Neutrino Detector at the LHC
- Author
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Ahdida, C, Albanese, R, Alexandrov, A, Andreini, M, Anokhina, A, Bay, A, Bestmann, P, Betancourt, C, Bezshyiko, I, Blanco, A, Bogomilov, M, Bondarenko, K, Bonivento, W M, Boisseaux-Bourgeois, P, Boyarsky, A, Buonocore, L, Buonaura, A, Buontempo, S, Cafaro, V, Callignon, M, Camporesi, T, Campanelli, M, Canale, V, Cerutti, F, Charitonidis, N, Chernyavskiy, M, Choi, K-Y, Cholak, S, Cicero, V, Conaboy, A P, Congedo, L, Crespo, O, Cristinziani, M, Crupano, A, Dallavalle, G M, Datwyler, A, D'Ambrosio, N, Dashkina, A, De Carvalho Saraiva, J, De Bryas Dexmiers D'Archiac, P T, De Lellis, G, De Magistris, M, De Roeck, A, De Rujula, A, De Serio, M, De Simone, D, Dedenko, L, Di Crescenzo, A, Di Giulio, L, Dolmatov, A, Durhan, O, Fasanella, D, Fedotovs, F, Ferrillo, M, Ferro-Luzzi, M, Fini, R A, Fonte, P, Fresa, R, Galati, G, Gall, J, Garcia Alia, R, Gentile, V, Giordano, V, Golovatiuk, A, Golutvin, A, Gorbounov, P, Gorshenkov, M, Graverini, E, Grenard, J-L, Guler, A M, Haefeli, G J, van Herwijnen, E, Iaselli, G, Iengo, P, Ilieva, S, Infantino, A, Iuliano, A, Jacobsson, R, Jonker, M, Kamiscioglu, C, Karyotakis, Y, Khalikov, E, Kim, Y G, Kim, S H, Kolev, D I, Komatsu, M, Konovalova, N, Kovalenko, S, Krasilnikova, I, Kuleshov, S, Lacker, H M, Lantwin, O, Lauria, A, Lee, K S, Lee, K Y, Leonardo, N, Lerner, G, Lo Meo, S, Loschiavo, V P, Lopes, L, Magnan, A, Maietta, M, Malinin, A, Maurer, Y, Managadze, A K, Marsh, S, Miano, A, Mikulenko, A, Montanari, A, Montesi, M C, Naka, T, Navarria, F L, Ninin, P, Ogawa, S, Okateva, N, Osborne, J, Owtscharenko, N, Owen, P H, Ovchynnikov, M, Park, B D, Passeggio, G, Pastore, A, Patel, M, Patrizii, L, Petrov, A, Podgrudkov, D, Petkov, G L, Petridis, K, Polukhina, N, Prelipcean, D, Prota, A, Queiroz, F, Quercia, A, Ratnikov, F, Redi, F, Reghunath, A, Rodrigues Cavalcante, A B, Rodrigues Fernandez, J, Roganova, T, Rovelli, T, Ruchayskiy, O, Ruf, T, Sabate Gilarte, M, Sanchez Galan, F, Santos Diaz, P, Schneider, O, Sekhniaidze, G, Serra, N, Shaposhnikov, M, Shchedrina, T, Shchutska, L, Shevchenko, V, Shibuya, H, Shirobokov, S, Shmanin, E, Simone, S, Sirri, G, Soares, G, Sohn, J Y, Souaya, M, Starkov, N, Tastet, J L, Timiryasov, I, Tioukov, V, Tosi, N, Trippl, C, Tramontano, F, Tsenov, R, Ursov, E, Ustyuzhanin, A, Vankova-Kirilova, G, Vendeuvre, C, Visone, C, Wanke, R, Woo, J-K, Yoon, C S, Zamora-Saa, J, and Zaffaroni, E
- Subjects
Physics::Instrumentation and Detectors ,High Energy Physics::Experiment ,Detectors and Experimental Techniques - Abstract
SND@LHC is a proposed, compact and stand-alone experiment to perform measurements with neutrinos produced at the LHC in an hitherto unexplored pseudo-rapidity region of $7.2 < \eta < 8.6$, complementary to all the other experiments at the LHC. The experiment is to be located 480 m downstream of IP1 in the unused TI18 tunnel. The first phase aims at operating the detector throughout LHC Run 3 to collect a total integrated luminosity of 150 fb$^{−1}$. Following the review of the Letter of Intent [1], submitted in August 2020, LHCC recommended the collaboration to proceed with the preparation of a Technical Proposal (TP), reported herein.
- Published
- 2021
47. Sensitivity of the SHiP experiment to light dark matter
- Author
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Ahdida, C., Akmete, A., Albanese, R., Alexandrov, A., Anokhina, A., Aoki, S., Arduini, G., Atkin, E., Azorskiy, N., Back, J. J., Bagulya, A., Baaltasar Dos Santos, F., Baranov, A., Bardou, F., Barker, G. J., Battistin, M., Bauche, J., Bay, A., Bayliss, V., Bencivenni, G., Berdnikov, A. Y., Berdnikov, Y. A., Bertani, M., Betancourt, C., Bezshyiko, I., Bezshyyko, O., Bick, D., Bieschke, S., Blanco, A., Boehm, J., Bogomilov, M., Boiarska, I., Bondarenko, K., Bonivento, W. M., Borburgh, J., Boyarsky, A., Brenner, Richard, Breton, D., Buscher, V., Buonaura, A., Buonocore, L., Buontempo, S., Cadeddu, S., Calcaterra, A., Calviani, M., Campanelli, M., Casolino, M., Charitonidis, N., Chau, P., Chauveau, J., Chepurnov, A., Chernyavskiy, M., Choi, K. -Y, Chumakov, A., Ciambrone, P., Cicero, V., Congedo, L., Cornelis, K., Cristinziani, M., Crupano, A., Dallavalle, G. M., Datwyler, A., D'Ambrosio, N., D'Appollonio, G., de Asmundis, R., De Carvalho Saraiva, J., De Lellis, G., de Magistris, M., De Roeck, A., De Serio, M., De Simone, D., Dedenko, L., Dergachev, P., Di Crescenzo, A., Di Giulio, L., Di Marco, N., Dib, C., Dijkstra, H., Dmitrenko, V., Dougherty, L. A., Dolmatov, A., Domenici, D., Donskov, S., Drohan, V., Dubreuil, A., Durhan, O., Ehlert, M., Elikkaya, E., Enik, T., Etenko, A., Fabbri, F., Fedin, O., Fedotovs, F., Felici, G., Ferrillo, M., Ferro-Luzzi, M., Filippov, K., Fini, R. A., Fonte, P., Franco, C., Fraser, M., Fresa, R., Froeschl, R., Frugiuele, C., Fukuda, T., Galati, G., Gall, J., Gatignon, L., Gavrilov, G., Gentile, V., Goddard, B., Golinka-Bezshyyko, L., Golovatiuk, A., Golovtsov, V., Golubkov, D., Golutvin, A., Gorbounov, P., Gorbunov, D., Gorbunov, S., Gorkavenko, V., Gorshenkov, M., Grachev, V., Grandchamp, A. L., Graverini, E., Grenard, J. -L, Grenier, D., Grichine, V., Gruzinskii, N., Guler, A. M., Guz, Yu., Haefeli, G. J., Hagner, C., Hakobyan, H., Harris, I. W., van Herwijnen, E., Hessler, C., Hollnagel, A., Hosseini, B., Hushchyn, M., Iaselli, G., Iuliano, A., Jacobsson, R., Jokovic, D., Jonker, M., Kadenko, I., Kain, V., Kaiser, B., Kamiscioglu, C., Karpenkov, D., Kershaw, K., Khabibullin, M., Khalikov, E., Khaustov, G., Khoriauli, G., Khotyantsev, A., Kim, Y. G., Kim, V., Kitagawa, N., Ko, J. -W, Kodama, K., Kolesnikov, A., Kolev, D. I., Kolosov, V., Komatsu, M., Kono, A., Konovalova, N., Kormannshaus, S., Korol, I., Korol'ko, I., Korzenev, A., Kostyukhin, V., Koukovini Platia, E., Kovalenko, S., Krasilnikova, I., Kudenko, Y., Kurbatov, E., Kurbatov, P., Kurochka, V., Kuznetsova, E., Lacker, H. M., Lamont, M., Lanfranchi, G., Lantwin, O., Lauria, A., Lee, K. S., Lee, K. Y., Levy, J. -M, Loschiavo, V. P., Lopes, L., Lopez Sola, E., Lyubovitskij, V., Maalmi, J., Magnan, A., Maleev, V., Malinin, A., Maltoni, F., Manabe, Y., Managadze, A. K., Manfredi, M., Marsh, S., Marshall, A. M., Mattelaer, O., Mefodev, A., Mermod, P., Miano, A., Mikado, S., Mikhaylov, Yu., Milstead, D. A., Mineev, O., Montanari, A., Montesi, M. C., Morishima, K., Movchan, S., Muttoni, Y., Naganawa, N., Nakamura, M., Nakano, T., Nasybulin, S., Ninin, P., Nishio, A., Novikov, A., Obinyakov, B., Ogawa, S., Okateva, N., Opitz, B., Osborne, J., Ovchynnikov, M., Owtscharenko, N., Owen, P. H., Pacholek, P., Paoloni, A., Park, B. D., Pastore, A., Patel, M., Pereyma, D., Perillo-Marcone, A., Petkov, G. L., Petridis, K., Petrov, A., Podgrudkov, D., Poliakov, V., Polukhina, N., Prieto Prieto, J., Prokudin, M., Prota, A., Quercia, A., Rademakers, A., Rakai, A., Ratnikov, F., Rawlings, T., Redi, F., Ricciardi, S., Rinaldesi, M., Rodin, Volodymyr, Rodin, Viktor, Robbe, P., Rodrigues Cavalcante, A. B., Roganova, T., Rokujo, H., Rosa, G., Rovelli, T., Ruchayskiy, O., Ruf, T., Samoylenko, V., Samsonov, V., Sanchez Galan, F., Santos Diaz, P., Sanz Ull, A., Saputi, A., Sato, O., Savchenko, E. S., Schliwinski, J. S., Schmidt-Parzefall, W., Serra, N., Sgobba, S., Shadura, O., Shakin, A., Shaposhnikov, M., Shatalov, P., Shchedrina, T., Shchutska, L., Shevchenko, V., Shibuya, H., Shirobokov, S., Shustov, A., Silverstein, S. B., Simone, S., Simoniello, R., Skorokhvatov, M., Smirnov, S., Sohn, J. Y., Sokolenko, A., Solodko, E., Starkov, N., Stoel, L., Stramaglia, M. E., Sukhonos, D., Suzuki, Y., Takahashi, S., Tastet, J. L., Teterin, P., Than Naing, S., Timiryasov, I., Tioukov, V., Tommasini, D., Torii, M., Tosi, N., Tramontano, F., Treille, D., Tsenov, R., Ulin, S., Ursov, E., Ustyuzhanin, A., Uteshev, Z., Uvarov, L., Vankova-Kirilova, G., Vannucci, F., Venturi, V., Vilchinski, S., Vincke, Heinz, Vincke, Helmut, Visone, C., Vlasik, K., Volkov, A., Voronkov, R., van Waasen, S., Wanke, R., Wertelaers, P., Williams, O., Woo, J. -K, Wurm, M., Xella, S., Yilmaz, D., Yilmazer, A. U., Yoon, C. S., Zaytsev, Yu., Zelenov, A., Zimmerman, J., Ahdida, C., Akmete, A., Albanese, R., Alexandrov, A., Anokhina, A., Aoki, S., Arduini, G., Atkin, E., Azorskiy, N., Back, J. J., Bagulya, A., Baaltasar Dos Santos, F., Baranov, A., Bardou, F., Barker, G. J., Battistin, M., Bauche, J., Bay, A., Bayliss, V., Bencivenni, G., Berdnikov, A. Y., Berdnikov, Y. A., Bertani, M., Betancourt, C., Bezshyiko, I., Bezshyyko, O., Bick, D., Bieschke, S., Blanco, A., Boehm, J., Bogomilov, M., Boiarska, I., Bondarenko, K., Bonivento, W. M., Borburgh, J., Boyarsky, A., Brenner, Richard, Breton, D., Buscher, V., Buonaura, A., Buonocore, L., Buontempo, S., Cadeddu, S., Calcaterra, A., Calviani, M., Campanelli, M., Casolino, M., Charitonidis, N., Chau, P., Chauveau, J., Chepurnov, A., Chernyavskiy, M., Choi, K. -Y, Chumakov, A., Ciambrone, P., Cicero, V., Congedo, L., Cornelis, K., Cristinziani, M., Crupano, A., Dallavalle, G. M., Datwyler, A., D'Ambrosio, N., D'Appollonio, G., de Asmundis, R., De Carvalho Saraiva, J., De Lellis, G., de Magistris, M., De Roeck, A., De Serio, M., De Simone, D., Dedenko, L., Dergachev, P., Di Crescenzo, A., Di Giulio, L., Di Marco, N., Dib, C., Dijkstra, H., Dmitrenko, V., Dougherty, L. A., Dolmatov, A., Domenici, D., Donskov, S., Drohan, V., Dubreuil, A., Durhan, O., Ehlert, M., Elikkaya, E., Enik, T., Etenko, A., Fabbri, F., Fedin, O., Fedotovs, F., Felici, G., Ferrillo, M., Ferro-Luzzi, M., Filippov, K., Fini, R. A., Fonte, P., Franco, C., Fraser, M., Fresa, R., Froeschl, R., Frugiuele, C., Fukuda, T., Galati, G., Gall, J., Gatignon, L., Gavrilov, G., Gentile, V., Goddard, B., Golinka-Bezshyyko, L., Golovatiuk, A., Golovtsov, V., Golubkov, D., Golutvin, A., Gorbounov, P., Gorbunov, D., Gorbunov, S., Gorkavenko, V., Gorshenkov, M., Grachev, V., Grandchamp, A. L., Graverini, E., Grenard, J. -L, Grenier, D., Grichine, V., Gruzinskii, N., Guler, A. M., Guz, Yu., Haefeli, G. J., Hagner, C., Hakobyan, H., Harris, I. W., van Herwijnen, E., Hessler, C., Hollnagel, A., Hosseini, B., Hushchyn, M., Iaselli, G., Iuliano, A., Jacobsson, R., Jokovic, D., Jonker, M., Kadenko, I., Kain, V., Kaiser, B., Kamiscioglu, C., Karpenkov, D., Kershaw, K., Khabibullin, M., Khalikov, E., Khaustov, G., Khoriauli, G., Khotyantsev, A., Kim, Y. G., Kim, V., Kitagawa, N., Ko, J. -W, Kodama, K., Kolesnikov, A., Kolev, D. I., Kolosov, V., Komatsu, M., Kono, A., Konovalova, N., Kormannshaus, S., Korol, I., Korol'ko, I., Korzenev, A., Kostyukhin, V., Koukovini Platia, E., Kovalenko, S., Krasilnikova, I., Kudenko, Y., Kurbatov, E., Kurbatov, P., Kurochka, V., Kuznetsova, E., Lacker, H. M., Lamont, M., Lanfranchi, G., Lantwin, O., Lauria, A., Lee, K. S., Lee, K. Y., Levy, J. -M, Loschiavo, V. P., Lopes, L., Lopez Sola, E., Lyubovitskij, V., Maalmi, J., Magnan, A., Maleev, V., Malinin, A., Maltoni, F., Manabe, Y., Managadze, A. K., Manfredi, M., Marsh, S., Marshall, A. M., Mattelaer, O., Mefodev, A., Mermod, P., Miano, A., Mikado, S., Mikhaylov, Yu., Milstead, D. A., Mineev, O., Montanari, A., Montesi, M. C., Morishima, K., Movchan, S., Muttoni, Y., Naganawa, N., Nakamura, M., Nakano, T., Nasybulin, S., Ninin, P., Nishio, A., Novikov, A., Obinyakov, B., Ogawa, S., Okateva, N., Opitz, B., Osborne, J., Ovchynnikov, M., Owtscharenko, N., Owen, P. H., Pacholek, P., Paoloni, A., Park, B. D., Pastore, A., Patel, M., Pereyma, D., Perillo-Marcone, A., Petkov, G. L., Petridis, K., Petrov, A., Podgrudkov, D., Poliakov, V., Polukhina, N., Prieto Prieto, J., Prokudin, M., Prota, A., Quercia, A., Rademakers, A., Rakai, A., Ratnikov, F., Rawlings, T., Redi, F., Ricciardi, S., Rinaldesi, M., Rodin, Volodymyr, Rodin, Viktor, Robbe, P., Rodrigues Cavalcante, A. B., Roganova, T., Rokujo, H., Rosa, G., Rovelli, T., Ruchayskiy, O., Ruf, T., Samoylenko, V., Samsonov, V., Sanchez Galan, F., Santos Diaz, P., Sanz Ull, A., Saputi, A., Sato, O., Savchenko, E. S., Schliwinski, J. S., Schmidt-Parzefall, W., Serra, N., Sgobba, S., Shadura, O., Shakin, A., Shaposhnikov, M., Shatalov, P., Shchedrina, T., Shchutska, L., Shevchenko, V., Shibuya, H., Shirobokov, S., Shustov, A., Silverstein, S. B., Simone, S., Simoniello, R., Skorokhvatov, M., Smirnov, S., Sohn, J. Y., Sokolenko, A., Solodko, E., Starkov, N., Stoel, L., Stramaglia, M. E., Sukhonos, D., Suzuki, Y., Takahashi, S., Tastet, J. L., Teterin, P., Than Naing, S., Timiryasov, I., Tioukov, V., Tommasini, D., Torii, M., Tosi, N., Tramontano, F., Treille, D., Tsenov, R., Ulin, S., Ursov, E., Ustyuzhanin, A., Uteshev, Z., Uvarov, L., Vankova-Kirilova, G., Vannucci, F., Venturi, V., Vilchinski, S., Vincke, Heinz, Vincke, Helmut, Visone, C., Vlasik, K., Volkov, A., Voronkov, R., van Waasen, S., Wanke, R., Wertelaers, P., Williams, O., Woo, J. -K, Wurm, M., Xella, S., Yilmaz, D., Yilmazer, A. U., Yoon, C. S., Zaytsev, Yu., Zelenov, A., and Zimmerman, J.
- Abstract
Dark matter is a well-established theoretical addition to the Standard Model supported by many observations in modern astrophysics and cosmology. In this context, the existence of weakly interacting massive particles represents an appealing solution to the observed thermal relic in the Universe. Indeed, a large experimental campaign is ongoing for the detection of such particles in the sub-GeV mass range. Adopting the benchmark scenario for light dark matter particles produced in the decay of a dark photon, with alpha(D) = 0.1 and m(A ') = 3m(chi), we study the potential of the SHiP experiment to detect such elusive particles through its Scattering and Neutrino detector (SND). In its 5-years run, corresponding to 2 center dot 10(20) protons on target from the CERN SPS, we find that SHiP will improve the current limits in the mass range for the dark matter from about 1 MeV to 300 MeV. In particular, we show that SHiP will probe the thermal target for Majorana candidates in most of this mass window and even reach the Pseudo-Dirac thermal relic.
- Published
- 2021
- Full Text
- View/download PDF
48. Teaching Pediatric Surgery in the Online Environment: Challenges and Opportunities
- Author
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Levitskyi, Anatolii, primary, Benzar, Iryna, additional, Vitiaz, Volodymyr, additional, Golovatiuk, Dmytro, additional, and Karabenyuk, Oleksandr, additional
- Published
- 2021
- Full Text
- View/download PDF
49. Directionality preservation of nuclear recoils in an emulsion detector for directional dark matter search
- Author
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Alexandrov, A., primary, De Lellis, G., additional, Di Crescenzo, A., additional, Golovatiuk, A., additional, and Tioukov, V., additional
- Published
- 2021
- Full Text
- View/download PDF
50. SND@LHC
- Author
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Ahdida, C., Akmete, A., Albanese, R., Alexandrov, A., Andreini, M., Anokhina, A., Aoki, S., Arduini, G., Atkin, E., Azorskiy, N., Back, J.J., Bagulya, A., Baaltasar Dos Santos, F., Baranov, A., Bardou, F., Barker, G.J., Battistin, M., Bauche, J., Bay, A., Bayliss, V., Bencivenni, G., Berdnikov, A.Y., Berdnikov, Y.A., Bertani, M., Bestmann, P., Betancourt, C., Bezshyiko, I., Bezshyyko, O., Bick, D., Bieschke, S., Blanco, A., Boehm, J., Bogomilov, M., Boiarska, I., Bondarenko, K., Bonivento, W.M., Borburgh, J., Boyarsky, A., Brenner, R., Breton, D., Buonocore, L.R., Büscher, V., Buonaura, A., Buontempo, S., Cadeddu, S., Calcaterra, A., Calviani, M., Campanelli, M., Canale, V., Casolino, M., Cerutti, F., Charitonidis, N., Chau, P., Chauveau, J., Chepurnov, A., Chernyavskiy, M., Choi, K.-Y., Chumakov, A., Ciambrone, P., Cicero, V., Congedo, L., Cornelis, K., Cristinziani, M., Crupano, A., Dallavalle, G.M., Datwyler, A., D'Ambrosio, N., D'Appollonio, G., De Asmundis, R., De Bryas Dexmiers D'Archiac, P.T., De Carvalho Saraiva, J., De Lellis, G., De Magistris, M., De Roeck, A., De Serio, M., De Simone, D., Dedenko, L., Dergachev, P., Di Crescenzo, A., Di Giulio, L., Di Marco, N., Dib, C., Dijkstra, H., Dmitrenko, V., Dmitrievskiy, S., Dougherty, L.A., Dolmatov, A., Domenici, D., Donskov, S., Drohan, V., Dubreuil, A., Durhan, O., Ehlert, M., Elikkaya, E., Enik, T., Etenko, A., Fabbri, F., Fedin, O., Fedotovs, F., Felici, G., Ferrillo, M., Ferro-Luzzi, M., Filippov, K., Fini, R.A., Fonte, P., Franco, C., Fraser, M., Fresa, R., Froeschl, R., Fukuda, T., Galati, G., Gall, J., Gatignon, L., Gavrilov, G., Gentile, V., Goddard, B., Golinka-Bezshyyko, L., Golovatiuk, A., Golubkov, D., Golutvin, A., Gorbounov, P., Gorbunov, D., Gorbunov, S., Gorkavenko, V., Gorshenkov, M., Grachev, V., Grandchamp, A.L., Graverini, E., Grenard, J.-L., Grenier, D., Grichine, V., Gruzinskii, N., Guler, A.M., Guz, Yu., Haefeli, G.J., Hagner, C., Hakobyan, H., Harris, I.W., Van Herwijnen, E., Hessler, C., Hollnagel, A., Hosseini, B., Hushchyn, M., Iaselli, G., Iengo, P., Iuliano, A., Jacobsson, R., Joković, D., Jonker, M., Kadenko, I., Kain, V., Kaiser, B., Kamiscioglu, C., Karpenkov, D., Kershaw, K., Khabibullin, M., Khalikov, E., Khaustov, G., Khoriauli, G., Khotyantsev, A., Kim, Y.G., Kim, V., Kitagawa, N., Ko, J.-W., Kodama, K., Kolesnikov, A., Kolev, D.I., Kolosov, V., Komatsu, M., Kono, A., Konovalova, N., Kormannshaus, S., Korol, I., Korol'ko, I., Korzenev, A., Kostyukhin, V., Koukovini Platia, E., Kovalenko, S., Krasilnikova, I., Kudenko, Y., Kurbatov, E., Kurbatov, P., Kurochka, V., Kuznetsova, E., Lacker, H.M., Lamont, M., Lanfranchi, G., Lantwin, O., Lauria, A., Lee, K.S., Lee, K.Y., Lévy, J.-M., Loschiavo, V.P., Lopes, L., Lopez Sola, E., Lyubovitskij, V., Maalmi, J., Magnan, A., Maleev, V., Malinin, A., Manabe, Y., Managadze, A.K., Manfredi, M., Marsh, S., Marshall, A.M., Mefodev, A., Mermod, P., Miano, A., Mikado, S., Mikhaylov, Yu., Milstead, D.A., Mineev, O., Montanari, A., Montesi, M.C., Morishima, K., Movchan, S., Muttoni, Y., Naganawa, N., Nasybulin, S., Ninin, P., Nishio, A., Novikov, A., Obinyakov, B., Ogawa, S., Okateva, N., Opitz, B., Osborne, J., Ovchynnikov, M., Owtscharenko, N., Owen, P.H., Pacholek, P., Paoloni, A., Park, B.D., Passeggio, G., Pastore, A., Patel, M., Pereyma, D., Perillo-Marcone, A., Petkov, G.L., Petridis, K., Petrov, A., Podgrudkov, D., Poliakov, V., Polukhina, N., Prieto Prieto, J., Prokudin, M., Prota, A., Quercia, A., Rademakers, A., Rakai, A., Ratnikov, F., Rawlings, T., Redi, F., Ricciardi, S., Rinaldesi, M., Rodin, Volodymyr, Rodin, Viktor, Robbe, P., Rodrigues Cavalcante, A.B., Roganova, T., Rokujo, H., Rosa, G., Rovelli, T., Ruchayskiy, O., Ruf, T., Sabate Gilarte, M., Samoylenko, V., Samsonov, V., Sanchez Galan, F., Santos Diaz, P., Sanz Ull, A., Saputi, A., Savchenko, E.S., Schliwinski, J.S., Schmidt-Parzefall, W., Schneider, O., Sekhniaidze, G., Serra, N., Sgobba, S., Shadura, O., Shakin, A., Shaposhnikov, M., Shatalov, P., Shchedrina, T., Shchutska, L., Shevchenko, V., Shibuya, H., Shihora, L., Shirobokov, S., Shustov, A., Silverstein, S.B., Simone, S., Simoniello, R., Skorokhvatov, M., Smirnov, S., Sohn, J.Y., Sokolenko, A., Solodko, E., Starkov, N., Stoel, L., Stramaglia, M.E., Strekalina, D., Sukhonos, D., Suzuki, Y., Takahashi, S., Tastet, J.L., Teterin, P., Than Naing, S., Timiryasov, I., Tioukov, V., Tommasini, D., Torii, M., Tosi, N., Tramontano, F., Treille, D., Tsenov, R., Ulin, S., Ursov, E., Ustyuzhanin, A., Uteshev, Z., Vankova-Kirilova, G., Vannucci, F., Vendeuvre, C., Venturi, V., Vilchinski, S., Vincke, Heinz, Vincke, Helmut, Visone, C., Vlasik, K., Volkov, A., Voronkov, R., Van Waasen, S., Wanke, R., Wertelaers, P., WILLIAMS, O., Woo, J.-K., Wurm, M., Xella, S., Yilmaz, D., Yilmazer, A.U., Yoon, C.S., Zaytsev, Yu., Zimmerman, J., Laboratoire de l'Accélérateur Linéaire (LAL), Université Paris-Sud - Paris 11 (UP11)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), Laboratoire de Physique Nucléaire et de Hautes Énergies (LPNHE (UMR_7585)), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris Diderot - Paris 7 (UPD7)-Sorbonne Université (SU)-Centre National de la Recherche Scientifique (CNRS), and SHiP
- Subjects
Physics::Instrumentation and Detectors ,SND ,High Energy Physics::Phenomenology ,muon: particle identification ,time-of-flight counter ,neutrino: detector ,CERN LHC Coll ,nuclear emulsion ,calorimeter: hadronic ,scintillation counter: fibre ,High Energy Physics::Experiment ,proposed experiment ,[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det] ,detector: design ,activity report - Abstract
We propose to build and operate a detector that, for the first time, will measure the process $pp\to\nu X$ at the LHC and search for feebly interacting particles (FIPs) in an unexplored domain. The TI18 tunnel has been identified as a suitable site to perform these measurements due to very low machine-induced background. The detector will be off-axis with respect to the ATLAS interaction point (IP1) and, given the pseudo-rapidity range accessible, the corresponding neutrinos will mostly come from charm decays: the proposed experiment will thus make the first test of the heavy flavour production in a pseudo-rapidity range that is not accessible by the current LHC detectors. In order to efficiently reconstruct neutrino interactions and identify their flavour, the detector will combine in the target region nuclear emulsion technology with scintillating fibre tracking layers and it will adopt a muon identification system based on scintillating bars that will also play the role of a hadronic calorimeter. The time of flight measurement will be achieved thanks to a dedicated timing detector. The detector will be a small-scale prototype of the scattering and neutrino detector (SND) of the SHiP experiment: the operation of this detector will provide an important test of the neutrino reconstruction in a high occupancy environment.
- Published
- 2020
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