33 results on '"Kisiel, Jan"'
Search Results
2. Muon momentum measurement in ICARUS-T600 LAr-TPC via multiple scattering in few-GeV range
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Antonello, Maddalena, Baibussinov, Bagdat, Bellini, Vincenzo, Benetti, Pietro Angelo, Boffelli, Fabrizio, Bubak, Arkadiusz, Calligarich, Elio, Centro, Sandro, Cervi, Tommaso, Cesana, Alessandra, Cieslik, Krzysztof, Cocco, Alfredo G., Dabrowska, Anna, Dermenev, Alexander, Falcone, Andrea, Farnese, Christian, Fava, Angela, Ferrari, Alfredo, Gibin, Daniele, Gninenko, Sergei, Guglielmi, Alberto, Haranczyk, Malgorzata, Holeczek, Jacek, Janik, Michal, Kirsanov, Mikhail, Kisiel, Jan, Kochanek, Iza, Lagoda, Justyna, Menegolli, Alessandro, Meng, Guang, Montanari, Claudio, Otwinowski, Stanislaw, Picchi, Pio, Pietropaolo, Francesco, Plonski, Piotr, Rappoldi, Andrea, Raselli, Gianluca, Rossella, Massimo, Rubbia, Carlo, Sala, Paola, Scaramelli, Alberto, Sergiampietri, Franco, Spanu, Maura, Stefan, Dorota, Sulej, Robert, Szarska, Monika, Terrani, Mario, Torti, Marta, Tortorici, Francesco, Varanini, Filippo, Ventura, Sandro, Vignoli, Chiara, Wang, Hanguo, Yang, Xiaofeng, Zalewskag, Agnieszka, Zani, Andrea, and Zaremba, Krzysztof
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Physics - Instrumentation and Detectors ,High Energy Physics - Experiment - Abstract
The measurement of muon momentum by Multiple Coulomb Scattering is a crucial ingredient to the reconstruction of {\nu}{\mu} CC events in the ICARUS-T600 liquid argon TPC in absence of magnetic field, as in the search for sterile neutrinos at Fermilab where ICARUS will be exposed to ~1 GeV Booster neutrino beam. A sample of ~1000 stopping muons produced by charged current interactions of CNGS {\nu}{\mu} in the surrounding rock at the INFN Gran Sasso underground Laboratory provides an ideal benchmark in the few-GeV range since their momentum can be directly and independently obtained by the calorimetric measurement. Stopping muon momentum in the 0.5- 4.5 GeV/c range has been reconstructed via Multiple Coulomb Scattering with resolution ranging from 10 to 25 % depending on muon energy, track length and uniformity of the electric field in the drift volume., Comment: 20 pages, 20 figures
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- 2016
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3. Natural background radiation at Lab 2 of Callio Lab, Pyhäsalmi mine in Finland
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Polaczek-Grelik, Kinga, Walencik-Łata, Agata, Szkliniarz, Katarzyna, Kisiel, Jan, Jȩdrzejczak, Karol, Szabelski, Jacek, Kasztelan, Marcin, Orzechowski, Jerzy, Tokarski, Przemysław, Marszał, Włodzimierz, Przybylak, Marika, Joutsenvaara, Jari, Puputti, Hannah J., Holma, Marko, and Enqvist, Timo
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- 2020
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4. Characterization of the radiation environment at TU Bergakademie in Freiberg, Saxony, Germany
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Polaczek-Grelik, Kinga, Walencik-Lata, Agata, Szkliniarz, Katarzyna, Kisiel, Jan, Jedrzejczak, Karol, Szabelski, Jacek, Mueller, Toni, Schreiter, Falk, Djakonow, Aneta, Lewandowski, Ryszard, Orzechowski, Jerzy, Tokarski, Przemysław, Jalas, Panu, Joutsenvaara, Jari, and Hildebrandt, Robert
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- 2019
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5. Characteristics of Natural Background Radiation in the Lubin Mine, Poland
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Walencik-Łata, Agata, primary, Szkliniarz, Katarzyna, additional, Kisiel, Jan, additional, Polaczek-Grelik, Kinga, additional, Jędrzejczak, Karol, additional, Kasztelan, Marcin, additional, Szabelski, Jacek, additional, Orzechowski, Jerzy, additional, Tokarski, Przemysław, additional, Marszał, Włodzimierz, additional, Przybylak, Marika, additional, Stolecki, Lech, additional, Selerowicz, Tomasz, additional, and Fuławka, Krzysztof, additional
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- 2022
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6. Lead shielding efficiency from the gamma background measurements in the salt cavern of the Polkowice–Sieroszowice copper mine
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Polaczek-Grelik, Kinga, Kisiel, Jan, Walencik-Łata, Agata, Mietelski, Jerzy W., Janowski, Paweł, Harańczyk, Małgorzata, Jurkowski, Jan, Zalewska, Agnieszka, Kobziński, Jan, Markowski, Paweł, and Sadowski, Andrzej
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- 2016
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7. Characteristics of Natural Background Radiation in the GIG Experimental Mine ‘Barbara’, Poland
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Walencik-Łata, Agata, primary, Szkliniarz, Katarzyna, additional, Kisiel, Jan, additional, Polaczek-Grelik, Kinga, additional, Jędrzejczak, Karol, additional, Kasztelan, Marcin, additional, Szabelski, Jacek, additional, Orzechowski, Jerzy, additional, Tokarski, Przemysław, additional, Marszał, Włodzimierz, additional, Przybylak, Marika, additional, Hildebrandt, Robert, additional, and Fuławka, Krzysztof, additional
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- 2022
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8. Characterization of natural radioactivity in the BSUIN and EUL underground laboratories based on the developed standard scheme
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Szkliniarz, Katarzyna, primary, Walencik-Łata, Agata, additional, KISIEL, Jan, additional, Polaczek-Grelik, Kinga, additional, Jędrzejczak, Karol, additional, Kasztelan, Marcin, additional, and Szabelski, Jacek, additional
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- 2021
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9. Characteristics of Natural Background Radiation in the Polkowice-Sieroszowice Mine, Poland
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Szkliniarz, Katarzyna, primary, Walencik-Łata, Agata, additional, Kisiel, Jan, additional, Polaczek-Grelik, Kinga, additional, Jędrzejczak, Karol, additional, Kasztelan, Marcin, additional, Szabelski, Jacek, additional, Orzechowski, Jerzy, additional, Tokarski, Przemysław, additional, Marszał, Włodzimierz, additional, Przybylak, Marika, additional, Fuławka, Krzysztof, additional, and Gola, Sebastian, additional
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- 2021
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10. Measurements of ν̄μ and ν̄μ + νμ charged-current cross-sections without detected pions nor protons on water and hydrocarbon at mean antineutrino energy of 0.86 GeV
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Abe, K., Akhlaq, N., Akutsu, R., Ali, A., Alt, C., Andreopoulos, C., Anthony, L., Antonova, M., Aoki, S., Ariga, A., Arihara, T., Asada, Y., Ashida, Y., Atkin, E. T., Awataguchi, Y., Ban, S., Barbi, M., Barker, G. J., Barr, G., Barrow, D., Barry, C., Batkiewicz-Kwasniak, M., Beloshapkin, A., Bench, F., Berardi, V., Berkman, S., Berns, L., Bhadra, S., Bienstock, S., Blanchet, A., Blondel, A., Bolognesi, S., Bonus, T., Bourguille, B., Boyd, S. B., Brailsford, D., Bravar, A., Bravo Berguño, D., Bronner, C., Bron, S., Bubak, Arkadiusz, Buizza Avanzini, M., Calcutt, J., Campbell, T., Cao, S., Cartwright, S. L., Catanesi, M. G., Cervera, A., Chappell, A., Checchia, C., Cherdack, D., Chikuma, N., Christodoulou, G., Cicerchia, M., Coleman, J., Collazuol, G., Cook, L., Coplowe, D., Cudd, A., Dąbrowska, A., De Rosa, G., Dealtry, T., Denner, P. F., Dennis, S. R., Densham, C., Dergacheva, A., Di Lodovico, F., Dokania, N., Dolan, S., Doyle, T. A., Drapier, O., Dumarchez, J., Dunne, P., Eguchi, A., Eklund, L., Emery-Schrenk, S., Ereditato, A., Fernandez, P., Feusels, T., Finch, A. J., Fiorentini, G. A., Fiorillo, G., Francois, C., Friend, M., Fujii, Y., Fujita, R., Fukuda, D., Fukuda, R., Fukuda, Y., Fusshoeller, K., Gameil, K., Giganti, C., Golan, T., Gonin, M., Gorin, A., Guigue, M., Hadley, D. R., Haigh, J. T., Hamacher-Baumann, P., Harris, D. A., Hartz, M., Hasegawa, T., Hassani, S., Hastings, N. C., Hayashino, T., Hayato, Y., Hiramoto, A., Hogan, M., Holeczek, Jacek, Hong Van, N. T., Honjo, T., Iacob, F., Ichikawa, A. K., Ikeda, M., Ishida, T., Ishii, T., Ishitsuka, M., Iwamoto, K., Izmaylov, A., Izumi, N., Jakkapu, M., Jamieson, B., Jenkins, S. J., Jesús-Valls, C., Jiang, M., Johnson, S., Jonsson, P., Jung, C. K., Jurj, P. B., Kabirnezhad, M., Kaboth, A. C., Kajita, T., Kakuno, H., Kameda, J., Karlen, D., Kasetti, S. P., Kataoka, Y., Katayama, Y., Katori, T., Kato, Y., Kearns, E., Khabibullin, M., Khotjantsev, A., Kikawa, T., Kikutani, H., Kim, H., Kim, J., King, S., Kisiel, Jan, Knight, A., Knox, A., Kobata, T., Kobayashi, T., Koch, L., Koga, T., Konaka, A., Kormos, L. L., Koshio, Y., Kostin, A., Kowalik, K., Kubo, H., Kudenko, Y., Kukita, N., Kuribayashi, S., Kurjata, R., Kutter, T., Kuze, M., Labarga, L., Lagoda, J., Lamoureux, M., Last, D., Laveder, M., Lawe, M., Licciardi, M., Lindner, T., Litchfield, R. P., Liu, S. L., Li, X., Longhin, A., Ludovici, L., Lu, X., Lux, T., Machado, L. N., Magaletti, L., Mahn, K., Malek, M., Manly, S., Maret, L., Marino, A. D., Marti-Magro, L., Martin, J. F., Maruyama, T., Matsubara, T., Matsushita, K., Matveev, V., Mauger, C., Mavrokoridis, K., Mazzucato, E., McCarthy, M., McCauley, N., McElwee, J., McFarland, K. S., McGrew, C., Mefodiev, A., Metelko, C., Mezzetto, M., Minamino, A., Mineev, O., Mine, S., Miura, M., Molina Bueno, L., Moriyama, S., Morrison, J., Mueller, Th. A., Munteanu, L., Murphy, S., Nagai, Y., Nakadaira, T., Nakahata, M., Nakajima, Y., Nakamura, A., Nakamura, K. G., Nakamura, K., Nakano, Y., Nakayama, S., Nakaya, T., Nakayoshi, K., Nantais, C., Naseby, C. E. R., Ngoc, T. V., Nguyen, V. Q., Niewczas, K., Nishikawa, K., Nishimura, Y., Noah, E., Nonnenmacher, T. S., Nova, F., Novella, P., Nowak, J., Nugent, J. C., O’Keeffe, H. M., O’Sullivan, L., Odagawa, T., Ogawa, T., Okada, R., Okumura, K., Okusawa, T., Oser, S. M., Owen, R. A., Oyama, Y., Palladino, V., Palomino, J. L., Paolone, V., Pari, M., Parker, W. C., Parsa, S., Pasternak, J., Paudyal, P., Pavin, M., Payne, D., Penn, G. C., Pickering, L., Pidcott, C., Pintaudi, G., Pinzon Guerra, E. S., Pistillo, C., Popov, B., Porwit, Kamil, Posiadała-Zezula, M., Pritchard, A., Quilain, B., Radermacher, T., Radicioni, E., Radics, B., Ratoff, P. N., Reinherz-Aronis, E., Riccio, C., Rondio, E., Roth, S., Rubbia, A., Ruggeri, A. C., Ruggles, C., Rychter, A., Sakashita, K., Sánchez, F., Santucci, G., Schloesser, C. M., Scholberg, K., Schwehr, J., Scott, M., Seiya, Y., Sekiguchi, T., Sekiya, H., Sgalaberna, D., Shah, R., Shaikhiev, A., Shaker, F., Shaykina, A., Shiozawa, M., Shorrock, W., Shvartsman, A., Skwarczyński, K., Smirnov, A., Smy, M., Sobczyk, T., Sobel, H., Soler, F. J. P., Sonoda, Y., Spina, R., Steinmann, J., Suvorov, S., Suzuki, A., Suzuki, S. Y., Suzuki, Y., Sztuc, A. A., Tada, M., Tajima, M., Takeda, A., Takeuchi, Y., Tanaka, H. K., Tanaka, H. A., Tanaka, S., Tanihara, Y., Tani, M., Teshima, N., Thompson, L. F., Toki, W., Touramanis, C., Towstego, T., Tsui, K. M., Tsukamoto, T., Tzanov, M., Uchida, Y., Uno, W., Vagins, M., Valder, S., Vallari, Z., Vargas, D., Vasseur, G., Vilela, C., Vinning, W. G. S., Vladisavljevic, T., Volkov, V. V., Wachala, T., Walker, J., Walsh, J. G., Wang, Y., Wark, D., Wascko, M. O., Weber, A., Wendell, R., Wilking, M. J., Wilkinson, C., Wilson, J. R., Wilson, R. J., Wood, K., Wret, C., Xia, J., Yamada, Y., Yamamoto, K., Yanagisawa, C., Yang, G., Yano, T., Yasutome, K., Yen, S., Yershov, N., Yokoyama, M., Yoshida, T., Yoshimoto, Y., Yu, M., Zalewska, A., Zalipska, J., Zaremba, K., Zarnecki, G., Ziembicki, M., Zimmerman, E. D., Zito, M., Zsoldos, S., and Zykova, A.
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hydrocarbon ,protons ,water ,High Energy Physics::Experiment ,Nuclear Experiment ,antineutrino ,charged current - Abstract
We report measurements of the flux-integrated ν̄μ and ν̄μ + νμ charged-current crosssections on water and hydrocarbon targets using the T2K anti-neutrino beam, with a mean beam energy of 0.86 GeV. The signal is defined as the (anti-) neutrino chargedcurrent interaction with one induced μ } and no detected charged pion nor proton. These measurements are performed using a new WAGASCI module recently added to the T2K setup in combination with the INGRID Proton module. The phase space of muons is restricted to the high-detection efficiency region, pμ > 400 MeV/c and θμ < 30◦, in the laboratory frame. Absence of pions and protons in the detectable phase space of “pπ > 200 MeV/c and θπ < 70◦”, and “pp > 600 MeV/c and θp < 70◦” is required. In this paper, both of the ν̄μ cross-sections and ν̄μ + νμ cross-sections on water and hydrocarbon targets, and their ratios are provided by using the D’Agostini unfolding method. The results of the integrated ν̄μ cross-section measurements over this phase space are σH2O = (1.082 ± 0.068(stat.)+0.145 −0.128(syst.)) × 10−39 cm2/nucleon, σCH = (1.096 ± 0.054(stat.)+0.132 −0.117(syst.)) × 10−39 cm2/nucleon, and σH2O/σCH = 0.987 ± 0.078(stat.)+0.093 −0.090(syst.). The ν̄μ + νμ cross-section is σH2O = (1.155 ± 0.064(stat.)+0.148 −0.129(syst.)) × 10−39 cm2/nucleon, σCH = (1.159 ± 0.049(stat.) +0.129 −0.115(syst.)) × 10−39 cm2/nucleon, and σH2O/σCH = 0.996 ± 0.069(stat.)+0.083 −0.078(syst.).
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- 2021
11. First T2K measurement of transverse kinematic imbalance in the muon-neutrino charged-current single-π+ production channel containing at least one proton
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Abe, K., Akhlaq, N., Akutsu, R., Ali, A., Bubak, Arkadiusz, Holeczek, Jacek, Kisiel, Jan, and Porwit, Kamil
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measurement of the transverse kinematic ,transverse kinematic - Abstract
Authors: K. Abe, N. Akhlaq, R. Akutsu, A. Ali, C. Alt, C. Andreopoulos, M. Antonova, S. Aoki, T. Arihara,Y. Asada, Y. Ashida, E. T. Atkin, Y. Awataguchi, G. J. Barker, G. Barr, D. Barrow, M. Batkiewicz-Kwasniak, A. Beloshapkin, F. Bench, V. Berardi, L. Berns, S. Bhadra, A. Blanchet, A. Blondel, S. Bolognesi,T. Bonus, B. Bourguille, S. B. Boyd, A. Bravar, D. Bravo Berguño, C. Bronner, S. Bron, A. Bubak, M. Buizza Avanzini, S. Cao, S. L. Cartwright, M. G. Catanesi, A. Cervera, J. Chakrani,D. Cherdack, G. Christodoulou, M. Cicerchia, J. Coleman,A. Dergacheva, F. Di Lodovico, S. Dolan, D. Douqa, T. A. Doyle, J. Dumarchez, P. Dunne, A. Eguchi, L. Eklund, S. Emery-Schrenk, A. Ereditato, A. J. Finch, G. Fiorillo, C. Francois, M. Friend,Y. Fujii, R. Fukuda, Y. Fukuda, K. Fusshoeller, C. Giganti,M. Gonin, E. A. G. Goodman, A. Gorin, M. Grassi, M. Guigue, D. R. Hadley, P. Hamacher-Baumann,D. A. Harris, M. Hartz, T. Hasegawa, S. Hassani, N. C. Hastings, Y. Hayato, A. Hiramoto,M. Hogan, Jacek Holeczek, N. T. Hong Van, T. Honjo, F. Iacob, A. K. Ichikawa, M. Ikeda, T. Ishida,M. Ishitsuka,K. Iwamoto, A. Izmaylov, N. Izumi, M. Jakkapu, B. Jamieson, S. J. Jenkins,C. Jesús-Valls, J. J. Jiang, P. Jonsson, C. K. Jung, P. B. Jurj, M. Kabirnezhad, H. Kakuno, J. Kameda, S. P. Kasetti, Y. Kataoka,Y. Katayama, T. Katori, E. Kearns, M. Khabibullin,A. Khotjantsev, T. Kikawa, H. Kikutani, S. King, Jan Kisiel, T. Kobata, T. Kobayashi, L. Koch, A. Konaka, L. L. Kormos, Y. Koshio, A. Kostin, K. Kowalik,Y. Kudenko, S. Kuribayashi, R. Kurjata, T. Kutter, M. Kuze, L. Labarga, J. Lagoda, M. Lamoureux,D. Last, M. Laveder, M. Lawe, S.-K. Lin, R. P. Litchfield, S. L. Liu, A. Longhin, L. Ludovici, X. Lu ,T. Lux, L. N. Machado, L. Magaletti, K. Mahn, M. Malek, S. Manly, L. Maret, A. D. Marino,L.Marti-Magro, T. Maruyama, T. Matsubara, K. Matsushita, C. Mauger, A. Maurel, K. Mavrokoridis,E. Mazzucato,N. McCauley, J. McElwee, K. S. McFarland,C. McGrew, A. Mefodiev, G. D. Megias,L. Mellet, M. Mezzetto, A. Minamino, O. Mineev, S. Mine, M. Miura, L. Molina Bueno, S. Moriyama, Th. A. Mueller, D. Munford, L. Munteanu, Y. Nagai,T. Nakadaira, M. Nakahata, Y. Nakajima, A. Nakamura, H. Nakamura, K. Nakamura, Y. Nakano, S. Nakayama,T. Nakaya, K. Nakayoshi,C. E. R. Naseby, T. V. Ngoc,∥ V. Q. Nguyen, K. Niewczas, Y. Nishimura, K. Nishizaki, E. Noah,T. S. Nonnenmacher, F. Nova, J. Nowak, J. C. Nugent, H. M. O’Keeffe, L. O’Sullivan, T. Odagawa,T. Ogawa,R. Okada, K. Okumura, T. Okusawa, R. A. Owen,Y. Oyama, V. Palladino,V. Paolone, M. Pari, W. C. Parker, J. Parlone, S. Parsa, J. Pasternak, M. Pavin, D. Payne, G. C. Penn, D. Pershey, L. Pickering, C. Pidcott,G. Pintaudi, C. Pistillo,B. Popov, Kamil Porwit, M. Posiadala-Zezula, B. Quilain,T. Radermacher,E. Radicioni,B. Radics, P. N. Ratoff, M. Reh, C. Riccio , E. Rondio, S. Roth, A. Rubbia, A.C. Ruggeri, C. A. Ruggles, A. Rychter, L. S. M. Lakshmi, K. Sakashita,F. Sánchez, G. Santucci, C.M. Schloesser, K. Scholberg, M. Scott, Y. Seiya, T. Sekiguchi, H. Sekiya, D. SgalabernaA. Shaikhiev, A. Shaykina, M. Shiozawa, W. Shorrock, A. Shvartsman,K. Skwarczynski,M. Smy, J. T. Sobczyk,H. Sobel, F. J. P. Soler,Y. Sonoda, R. Spina, S. Suvorov, A. Suzuki, S. Y. Suzuki,Y. Suzuki, A. A. Sztuc,M. Tada,M. Tajima,A. Takeda,Y. Takeuchi, H. K. Tanaka, Y. Tanihara,M. Tani, N. Teshima,N. Thamm, L. F. Thompson,W. Toki, C. Touramanis, T. Towstego K. M. Tsui ,T.Tsukamoto,M. Tzanov,Y. Uchida, M. Vagins,S. Valder,D. Vargas,G. Vasseur,C. Vilela,W. G. S. Vinning, T. Vladisavljevic,T. Wachala, J. Walker,J. G. Walsh, Y. Wang, L. Wan,D. Wark,M.O. Wascko,A. Weber,R. Wendell, M. J. Wilking, C. Wilkinson, J. R. Wilson, K. Wood, C. Wret, J.Xia, Y.-h. Xu, K. Yamamoto,C. Yanagisawa,G. Yang,T. Yano, K. Yasutome, N. Yershov,M. Yokoyama, T. Yoshida, Y. Yoshimoto, M. Yu,R. Zaki, A. Zalewska, J. Zalipska, K. Zaremba,G. Zarnecki,M. Ziembicki, M. Zito,S. Zsoldos, This paper reports the first T2K measurement of the transverse kinematic imbalance in the single-πþ production channel of neutrino interactions. We measure the differential cross sections in the muon-neutrino charged-current interaction on hydrocarbon with a single πþ and at least one proton in the final state, at the ND280 off axis near detector of the T2K experiment. The extracted cross sections are compared to the predictions from different neutrino-nucleus interaction event generators. Overall, the results show a preference for models that have a more realistic treatment of nuclear medium effects including the initial nuclear state and final-state interactions.
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- 2021
12. Improved constraints on neutrino mixing from the T2K experiment with 3.13×1021 protons on target
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Bubak, Arkadiusz, Holeczek, Jacek, Kisiel, Jan, and Porwit, Kamil
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particle interactions ,neutrino oscillations ,leptons ,particle phenomena ,neutrino interactions - Abstract
K. Abe, N. Akhlaq, R. Akutsu, A. Ali, C. Alt, C. Andreopoulos, M. Antonova, S. Aoki, T. Arihara, Y. Asada, Y. Ashida, E. T. Atkin, Y. Awataguchi, G. J. Barker, G. Barr, D. Barrow, M. Batkiewicz-Kwasniak, A. Beloshapkin, F. Bench, V. Berardi, L. Berns, S. Bhadra, A. Blanchet, A. Blondel, S. Bolognesi, T. Bonus, B. Bourguille, S. B. Boyd, A. Bravar, D. Bravo Berguño, C. Bronner, S. Bron, M. Buizza Avanzini, S. Cao, S. L. Cartwright, M. G. Catanesi, A. Cervera, J. Chakrani, D. Cherdack, G. Christodoulou, M. Cicerchia, J. Coleman, G. Collazuol, L. Cook, D. Coplowe, A. Cudd, G. De Rosa, T. Dealtry, C. C. Delogu, S. R. Dennis, C. Densham, A. Dergacheva, F. Di Lodovico, S. Dolan, D. Douqa, T. A. Doyle, J. Dumarchez, P. Dunne, A. Eguchi, L. Eklund, S. Emery-Schrenk, A. Ereditato, A. J. Finch, G. Fiorillo, C. Francois, M. Friend, Y. Fujii, R. Fukuda, Y. Fukuda, K. Fusshoeller, C. Giganti, M. Gonin, E. A. G. Goodman, A. Gorin, M. Grassi, M. Guigue, D. R. Hadley, P. Hamacher-Baumann, D. A. Harris, M. Hartz, T. Hasegawa, S. Hassani, N. C. Hastings, Y. Hayato, A. Hiramoto, M. Hogan, N. T. Hong Van, T. Honjo, F. Iacob, A. K. Ichikawa, M. Ikeda, T. Ishida, M. Ishitsuka, K. Iwamoto, A. Izmaylov, N. Izumi, M. Jakkapu, B. Jamieson, S. J. Jenkins, C. Jesús-Valls, J. J. Jiang, P. Jonsson, C. K. Jung, P. B. Jurj, M. Kabirnezhad, H. Kakuno, J. Kameda, S. P. Kasetti, Y. Kataoka, Y. Katayama, T. Katori, E. Kearns, M. Khabibullin, A. Khotjantsev, T. Kikawa, H. Kikutani, S. King, T. Kobata, T. Kobayashi, L. Koch, A. Konaka, L. L. Kormos, Y. Koshio, A. Kostin, K. Kowalik, Y. Kudenko, S. Kuribayashi, R. Kurjata, T. Kutter, M. Kuze, L. Labarga, J. Lagoda, M. Lamoureux, D. Last, M. Laveder, M. Lawe, S.-K. Lin, R. P. Litchfield, S. L. Liu, A. Longhin, L. Ludovici, X. Lu, T. Lux, L. N. Machado, L. Magaletti, K. Mahn, M. Malek, S. Manly, L. Maret, A. D. Marino, L. Marti-Magro, T. Maruyama, T. Matsubara, K. Matsushita, C. Mauger, A. Maurel, K. Mavrokoridis, E. Mazzucato, N. McCauley, J. McElwee, K. S. McFarland, C. McGrew, A. Mefodiev, G. D. Megias, L. Mellet, M. Mezzetto, A. Minamino, O. Mineev, S. Mine, M. Miura, L. Molina Bueno, S. Moriyama, Th. A. Mueller, D. Munford, L. Munteanu, Y. Nagai, T. Nakadaira, M. Nakahata, Y. Nakajima, A. Nakamura, H. Nakamura, K. Nakamura, Y. Nakano, S. Nakayama, T. Nakaya, K. Nakayoshi, C. E. R. Naseby, T. V. Ngoc, V. Q. Nguyen, K. Niewczas, Y. Nishimura,K. Nishizaki, E. Noah, T. S. Nonnenmacher, F. Nova, J. Nowak, J. C. Nugent, H. M. O’Keeffe, L. O’Sullivan, T. Odagawa, T. Ogawa, R. Okada, K. Okumura, T. Okusawa, R. A. Owen, Y. Oyama,,† V. Palladino, V. Paolone, M. Pari, W. C. Parker, J. Parlone, S. Parsa, J. Pasternak, M. Pavin, D. Payne, G. C. Penn, D. Pershey, L. Pickering, C. Pidcott, G. Pintaudi, C. Pistillo, B. Popov, M. Posiadala-Zezula, A. Pritchard, B. Quilain, T. Radermacher, E. Radicioni, B. Radics, P. N. Ratoff, M. Reh, C. Riccio, E. Rondio, S. Roth, A. Rubbia, A. C. Ruggeri, C. A. Ruggles, A. Rychter, L. S. M. Lakshmi, K. Sakashita, F. Sánchez, G. Santucci, C. M. Schloesser, K. Scholberg, M. Scott , Y. Seiya, T. Sekiguchi, H. Sekiya, D. Sgalaberna, A. Shaikhiev, A. Shaykina, M. Shiozawa, W. Shorrock, A. Shvartsman, K. Skwarczynski, M. Smy, J. T. Sobczyk, H. Sobel, F. J. P. Soler, Y. Sonoda, R. Spina, S. Suvorov, A. Suzuki, S. Y. Suzuki, Y. Suzuki, A. A. Sztuc, M. Tada,, M. Tajima, A. Takeda, Y. Takeuchi, H. K. Tanaka, Y. Tanihara, M. Tani, N. Teshima, N. Thamm, L. F. Thompson, W. Toki, C. Touramanis, T. Towstego, K. M. Tsui, T. Tsukamoto, M. Tzanov, Y. Uchida, M. Vagins, S. Valder, D. Vargas, G. Vasseur, C. Vilela, W. G. S. Vinning, T. Vladisavljevic, T. Wachala, J. Walker, J. G. Walsh, Y. Wang, L. Wan, D. Wark, M. O. Wascko, A. Weber, R. Wendell, M. J. Wilking, C. Wilkinson, J. R. Wilson, K. Wood, C. Wret, J. Xia, Y.-h. Xu, K. Yamamoto, C. Yanagisawa, G. Yang, T. Yano, K. Yasutome, N. Yershov, M. Yokoyama, T. Yoshida, Y. Yoshimoto, M. Yu, R. Zaki, A. Zalewska, J. Zalipska, K. Zaremba, G. Zarnecki, M. Ziembicki, M. Zito, S. Zsoldos, The T2K experiment reports updated measurements of neutrino and antineutrino oscillations using both appearance and disappearance channels. This result comes from an exposure of 14.9ð16.4Þ × 1020 protons on target in neutrino (antineutrino) mode. Significant improvements have been made to the neutrino interaction model and far detector reconstruction. An extensive set of simulated data studies have also been performed to quantify the effect interaction model uncertainties have on the T2K oscillation parameter sensitivity. T2K performs multiple oscillation analyses that present both frequentist and Bayesian intervals for the Pontecorvo-Maki-Nakagawa-Sakata parameters. For fits including a constraint on sin2θ13 from reactor data and assuming normal mass ordering T2K measures sin2θ23 ¼ 0.53þ0.03 −0.04 and Δm2 32 ¼ ð2.45 0.07Þ × 10−3 eV2 c−4. The Bayesian analyses show a weak preference for normal mass ordering 89)% posterior probability) and the upper sin2 θ23 octant (80% posterior probability), with a uniform prior probability assumed in both cases. The T2K data exclude CP conservation in neutrino oscillations at the 2σ level.
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- 2021
13. Measurement of the muon neutrino charged-current single π+ production on hydrocarbon using the T2K off-axis near detector ND280
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Abe, K., Akutsu, R., Ali, A., Alt, C., Amey, J., Andreopoulos, C., Holeczek, Jacek, Kisiel, Jan, and Porwit, Kamil
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muon neutrino - Abstract
Authors: K. Abe,55 R. Akutsu,56 A. Ali,32 C. Alt,11 J. Amey,21 C. Andreopoulos,53,34 L. Anthony,34 M. Antonova,19 S. Aoki,31 A. Ariga,2 Y. Ashida,32 E. T. Atkin,21 Y. Awataguchi,58 Y. Azuma,41 S. Ban,32 M. Barbi,45 G. J. Barker,65 G. Barr,42 C. Barry,34 M. Batkiewicz-Kwasniak,15 A. Beloshapkin,26 F. Bench,34 V. Berardi,22 S. Berkman,4,61 R. M. Berner,2 L. Berns,57 S. Bhadra,69 S. Bienstock,52 A. Blondel,13,† S. Bolognesi,6 S. Bordoni,18,† B. Bourguille,18 S. B. Boyd,65 D. Brailsford,33 A. Bravar,13 C. Bronner,55 M. Buizza Avanzini,10 J. Calcutt,36 R. G. Calland,28 T. Campbell,7 S. Cao,16 S. L. Cartwright,49 R. Castillo,18,‡ M. G. Catanesi,22 A. Cervera,19 A. Chappell,65 C. Checchia,24 D. Cherdack,17 N. Chikuma,54 G. Christodoulou,12 J. Coleman,34 G. Collazuol,24 L. Cook,42,28 D. Coplowe,42 A. Cudd,36 A. Dabrowska,15 G. De Rosa,23 T. Dealtry,33 P. F. Denner,65 S. R. Dennis,34 C. Densham,53 F. Di Lodovico,30 N. Dokania,39 S. Dolan,12 O. Drapier,10 K. E. Duffy,42 J. Dumarchez,52 P. Dunne,21 L. Eklund,14 S. Emery-Schrenk,6 A. Ereditato,2 P. Fernandez,19 T. Feusels,4,61 A. J. Finch,33 G. A. Fiorentini,69 G. Fiorillo,23 C. Francois,2 M. Friend,16,§ Y. Fujii,16,§ R. Fujita,54 D. Fukuda,40 R. Fukuda,59 Y. Fukuda,37 K. Gameil,4,61 A. Garcia,18 C. Giganti,52 F. Gizzarelli,6 T. Golan,67 M. Gonin,10 A. Gorin,26 M. Guigue,52 D. R. Hadley,65 L. Haegel,13 J. T. Haigh,65 P. Hamacher-Baumann,48 D. Hansen,43 J. Harada,41 M. Hartz,61,28 T. Hasegawa,16,§ N. C. Hastings,16 T. Hayashino,32 Y. Hayato,55,28 A. Hillairet,62 T. Hiraki,32 A. Hiramoto,32 S. Hirota,32 M. Hogan,8 J. Holeczek,50 N. T. Hong Van,20,27 F. Hosomi,54 K. Huang,32 F. Iacob,24 A. K. Ichikawa,32 M. Ikeda,55 J. Imber,10 T. Inoue,41 J. Insler,35 R. A. Intonti,22 T. Ishida,16,§ T. Ishii,16,§ M. Ishitsuka,59 E. Iwai,16 K. Iwamoto,54 A. Izmaylov,19,26 B. Jamieson,66 S. J. Jenkins,49 C. Jesús-Valls,18 M. Jiang,32 S. Johnson,7 P. Jonsson,21 C. K. Jung,39,∥ M. Kabirnezhad,42 A. C. Kaboth,47,53 T. Kajita,56,∥ H. Kakuno,58 J. Kameda,55 D. Karlen,62,61 Y. Kataoka,55 T. Katori,30 Y. Kato,55 E. Kearns,3,28,∥ M. Khabibullin,26 A. Khotjantsev,26 H. Kim,41 J. Kim,4,61 S. King,44 J. Kisiel,50 A. Knight,65 A. Knox,33 T. Kobayashi,16,§ L. Koch,53 T. Koga,54 P. P. Koller,2 A. Konaka,61 L. L. Kormos,33 Y. Koshio,40,∥ K. Kowalik,38 H. Kubo,32 Y. Kudenko,26,¶ N. Kukita,41 R. Kurjata,64 T. Kutter,35 M. Kuze,57 L. Labarga,1 J. Lagoda,38 I. Lamont,33 M. Lamoureux,24 P. Lasorak,44 M. Laveder,24 M. Lawe,33 M. Licciardi,10 T. Lindner,61 Z. J. Liptak,7 R. P. Litchfield,14 S. L. Liu,39 X. Li,39 A. Longhin,24 J. P. Lopez,7 T. Lou,54 L. Ludovici,25 X. Lu,42 T. Lux,18 L. N. Machado,23 L. Magaletti,22 K. Mahn,36 M. Malek,49 S. Manly,46 L. Maret,13 A. D. Marino,7 J. F. Martin,60 P. Martins,44 S. Martynenko,39 T. Maruyama,16,§ T. Matsubara,16 K. Matsushita,54 V. Matveev,26 K. Mavrokoridis,34 W. Y. Ma,21 E. Mazzucato,6 M. McCarthy,69 N. McCauley,34 K. S. McFarland,46 C. McGrew,39 A. Mefodiev,26 C. Metelko,34 M. Mezzetto,24 A. Minamino,68 O. Mineev,26 S. Mine,5 A. Missert,7 M. Miura,55,∥ L. Molina Bueno,11 S. Moriyama,55,∥ J. Morrison,36 Th. A. Mueller,10 L. Munteanu,6 S. Murphy,11 Y. Nagai,7 T. Nakadaira,16,§ M. Nakahata,55,28 Y. Nakajima,55 A. Nakamura,40 K. G. Nakamura,32 K. Nakamura,28,16,§ K. D. Nakamura,32 Y. Nakanishi,32 S. Nakayama,55,28 T. Nakaya,32,28 K. Nakayoshi,16,§ C. Nantais,60 T. V. Ngoc,20 C. Nielsen,4,61 K. Niewczas,67 K. Nishikawa,16,* Y. Nishimura,29 T. S. Nonnenmacher,21 F. Nova,53 P. Novella,19 J. Nowak,33 J. C. Nugent,14 H. M. O’Keeffe,33 L. O’Sullivan,49 K. Okumura,56,28 T. Okusawa,41 W. Oryszczak,63 S. M. Oser,4,61 T. Ovsyannikova,26 R. A. Owen,44 Y. Oyama,16,§ V. Palladino,23 J. L. Palomino,39 V. Paolone,43 W. C. Parker,47 N. D. Patel,32 P. Paudyal,34 M. Pavin,61 D. Payne,34 G. C. Penn,34 Y. Petrov,4,61 L. Pickering,36 C. Pidcott,49 E. S. Pinzon Guerra,69 C. Pistillo,2 B. Popov,52,** K. Porwit,50 M. Posiadala-Zezula,63 J.-M. Poutissou,61 A. Pritchard,34 P. Przewlocki,38 B. Quilain,28 T. Radermacher,48 E. Radicioni,22 B. Radics,11 P. N. Ratoff,33 M. A. Rayner,13 E. Reinherz-Aronis,8 C. Riccio,23 E. Rondio,38 B. Rossi,23 S. Roth,48 A. Rubbia,11 A. C. Ruggeri,23 A. Rychter,64 K. Sakashita,16,§ F. Sánchez ,13 S. Sasaki,58 E. Scantamburlo,13 C. M. Schloesser,11 K. Scholberg,9,∥ J. Schwehr,8 M. Scott,21 Y. Seiya,41,†† T. Sekiguchi,16,§ H. Sekiya,55,28,∥ D. Sgalaberna,12 R. Shah,53,42 A. Shaikhiev,26 F. Shaker,66 D. Shaw,33 A. Shaykina,26 M. Shiozawa,55,28 T. Shirahige,40 W. Shorrock,21 A. Shvartsman,26 A. Smirnov,26 M. Smy,5 J. T. Sobczyk,67 H. Sobel,5,28 F. J. P. Soler,14 Y. Sonoda,55 J. Steinmann,48 T. Stewart,53 P. Stowell,49 Y. Suda,54 S. Suvorov,26,6 A. Suzuki,31 S. Y. Suzuki,16,§ Y. Suzuki,28 A. A. Sztuc,21 R. Tacik,45,61 M. Tada,16,§ A. Takeda,55 Y. Takeuchi,31,28 R. Tamura,54 H. K. Tanaka,55,∥ H. A. Tanaka,51,60 S. Tanaka,41 T. Thakore,35 L. F. Thompson,49 S. Tobayama,4,61 W. Toki,8 T. Tomura,55 C. Touramanis,34 K. M. Tsui,34 T. Tsukamoto,16,§ M. Tzanov,35 Y. Uchida,21 W. Uno,32 M. Vagins,28,5 S. Valder,65 Z. Vallari,39 D. Vargas,18 G. Vasseur,6 C. Vilela,39 W. G. S. Vinning,65 T. Vladisavljevic,42,28 V. V. Volkov,26 T. Wachala,15 J. Walker,66 J. G. Walsh,33 C.W. Walter,9,∥ Y. Wang,39 D. Wark,53,42 M. O. Wascko,21 A. Weber,53,42 R. Wendell,32,∥ M. J. Wilking,39 C. Wilkinson,2 J. R. Wilson,30 R. J. Wilson,8 K. Wood,39 C. Wret,46 Y. Yamada,16,* K. Yamamoto,41,†† S. Yamasu,40 C. Yanagisawa,39,‡‡ G. Yang,39 T. Yano,55 K. Yasutome,32 S. Yen,61 N. Yershov,26 M. Yokoyama,54,∥ T. Yoshida,57 M. Yu,69 A. Zalewska,15 J. Zalipska,38 L. Zambelli,16,§ K. Zaremba,64 G. Zarnecki,38 M. Ziembicki,64 E. D. Zimmerman,7 M. Zito,6 S. Zsoldos,44 and A. Zykova26 (The T2K Collaboration), We report the measurements of the single and double differential cross section of muon neutrino charged-current interactions on carbon with a single positively charged pion in the final state at the T2K offaxis near detector using 5.56 × 1020 protons on target. The analysis uses data control samples for the background subtraction and the cross section signal, defined as a single negatively charged muon and a single positively charged pion exiting from the target nucleus, is extracted using an unfolding method. The model-dependent cross section, integrated over the T2K off-axis neutrino beam spectrum peaking at 0.6 GeV, is measured to be σ ¼ ð11.76 0.44ðstatÞ 2.39ðsystÞÞ × 10−40 cm2 nucleon−1. Various differential cross sections are measured, including the first measurement of the Adler angles for single charged pion production in neutrino interactions with heavy nuclei target.
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- 2020
14. First measurement of the charged current (nu)over-bar(mu) double differential cross section on a water target without pions in the final state : (The T2K Collaboration)
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Abe, K., Akutsu, R., Ali, A., Alt, C., Andreopoulos, C., Anthony, L., Antonova, M., Aoki, S., Ariga, A., Ashida, Y., Atkin, E. T., Iwamoto, K., Izmaylov, A., Jamieson, B., Jenkins, S. J., Jesús-Valls, C., Jiang, M., Johnson, S., Jonsson, P., Jung, C. K., Kabirnezhad, M., Awataguchi, Y., Kaboth, A. C., Kajita, T., Kakuno, H., Kameda, J., Karlen, D., Kataoka, Y., Katori, T., Kato, Y., Kearns, E., Khabibullin, M., Ban, S., Khotjantsev, A., Kim, H., Kim, J., King, S., Kisiel, Jan, Knight, A., Knox, A., Kobayashi, T., Koch, L., Koga, T., Barbi, M., Konaka, A., Kormos, L.L., Koshio, Y., Kowalik, K., Kubo, H., Kudenko, Y., Kukita, N., Kurjata, R., Kutter, T., Kuze, M., Barker, G. J., Labarga, L., Lagoda, J., Lamoureux, M., Laveder, M., Lawe, M., Licciardi, M., Lindner, T., Litchfield, R. P., Liu, S. L., Li, X., Barr, G., Longhin, A., Ludovici, L., Lu, X., Lux, T., Magaletti, L., Mahn, K., Malek, M., Manly, S., Maret, L., Marino, A. D., Barry, C., Martin, J. F., Maruyama, T., Matsubara, T., Matsushita, K., Matveev, V., Mavrokoridis, K., Mazzucato, E., McCarthy, M., McCauley, N., McFarland, K. S., Batkiewicz-Kwasniak, M., McGrew, C., Mefodiev, A., Metelko, C., Mezzetto, M., Minamino, A., Mineev, O., Mine, S., Miura, M., Molina Bueno, L., Moriyama, S., Beloshapkin, A., Morrison, J., Mueller, Th. A., Munteanu, L., Murphy, S., Nagai, Y., Nakadaira, T., Nakahata, M., Nakajima, Y., Nakamura, A., Nakamura, K. G., Bench, F., Nakamura, K., Nakayama, S., Nakaya, T., Nakayoshi, K., Nantais, C., Ngoc, T. V., Niewczas, K., Nishikawa, K., Nishimura, Y., Nonnenmacher, T. S., Berardi, V., Nova, F., Novella, P., Nowak, J., Nugent, J. C., O’Keeffe, H. M., O’Sullivan, L., Okumura, K., Okusawa, T., Oser, S. M., Owen, R. A., Berkman, S., Oyama, Y., Palladino, V., Palomino, J.L., Paolone, V., Parker, W.C., Paudyal, P., Pavin, M., Payne, D., Penn, G. C., Pickering, L., Berns, L., Pidcott, C., Pinzon Guerra, E. S., Pistillo, C., Popov, B., Porwit, Kamil, Posiadala-Zezula, M., Pritchard, A., Quilain, B., Radermacher, T., Radicioni, E., Bhadra, S., Radics, B., Ratoff, P. N., Reinherz-Aronis, E., Riccio, C., Rondio, E., Roth, S., Rubbia, A., Ruggeri, A.C., Rychter, A., Sakashita, K., Bienstock, S., Sánchez, F., Schloesser, C. M., Scholberg, K., Schwehr, J., Scott, M., Seiya, Y., Sekiguchi, T., Sekiya, H., Sgalaberna, D., Shah, R., Blondel, A., Shaikhiev, A., Shaker, F., Shaykina, A., Shiozawa, M., Shorrock, W., Shvartsman, A., Smirnov, A., Smy, M., Sobczyk, J.T., Sobel, H., Bolognesi, S., Soler, F.J.P., Sonoda, Y., Steinmann, J., Suvorov, S., Suzuki, A., Suzuki, S.Y., Suzuki, Y., Sztuc, A. A., Tada, M., Takeda, A., Bourguille, B., Takeuchi, Y., Tanaka, H. K., Tanaka, H. A., Tanaka, S., Thompson, L.F., Toki, W., Touramanis, C., Tsui, K. M., Tsukamoto, T., Tzanov, M., Boyd, S. B., Uchida, Y., Uno, W., Vagins, M., Valder, S., Vallari, Z., Vargas, D., Vasseur, G., Vilela, C., Vinning, W. G. S., T. Vladisavljevic, Brailsford, D., Volkov, V.V., Wachala, T., Walker, J., Walsh, J.G., Wang, Y., Wark, D., Wascko, M.O., Weber, A., Wendell, R., Wilking, M.J., Bravar, A., Wilkinson, C., Wilson, J.R., Wilson, R.J., Wood, K., Wret, C., Yamada, Y., Yamamoto, K., Yanagisawa, C., Yang, G., Yano, T., Bronner, C., Yasutome, K., Yen, S., Yershov, N., Yokoyama, M., Yoshida, T., Yu, M., Zalewska, A., Zalipska, J., Zaremba, K., Zarnecki, G., Buizza Avanzini, M., Ziembicki, M., Zimmerman, E.D., Zito, M., Zsoldos, S., Zykova, A., Calcutt, J., Campbell, T., Cao, S., Cartwright, S. L., Catanesi, M. G., Cervera, A., Chappell, A., Checchia, C., Cherdack, D., Chikuma, N., Christodoulou, G., Coleman, J., Collazuol, G., Cook, L., Coplowe, D., Cudd, A., Dabrowska, A., De Rosa, G., Dealtry, T., Denner, P. F., Dennis, S. R., Densham, C., Di Lodovico, F., Dokania, N., Dolan, S., Drapier, O., Dumarchez, J., Dunne, P., Eklund, L., Emery-Schrenk, S., Ereditato, A., Fernandez, P., Feusels, T., Finch, A. J., Fiorentini, G. A., Fiorillo, G., Francois, C., Friend, M., Fujii, Y., Fujita, R., Fukuda, D., Fukuda, R., Fukuda, Y., Gameil, K., Giganti, C., Golan, T., Gonin, M., Gorin, A., Guigue, M., Hadley, D. R., Haigh, J. T., Hamacher-Baumann, P., Hartz, M., Hasegawa, T., Hastings, N. C., Hayashino, T., Hayato, Y., Hiramoto, A., Hogan, M., Holeczek, Jacek, Hong Van, N. T., Iacob, F., Ichikawa, A. K., Ikeda, M., Ishida, T., Ishii, T., and Ishitsuka, M.
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neutrino ,scattering ,nuclei - Abstract
This paper reports the first differential measurement of the charged-current ¯νμ interaction cross section on water with no pions in the final state. The unfolded flux-averaged measurement using the T2K off-axis near detector is given in double-differential bins of μþ momentum and angle. The integrated cross section in a restricted phase space is σ ¼ ð1.11 0.18Þ × 10−38 cm2 per water molecule. Comparisons with several nuclear models are also presented.
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- 2020
15. Measurements of natural background radiation in the underground laboratories of the BSUIN and EUL projects
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Szkliniarz, Katarzyna, primary, Polaczek-Grelik, Kinga, additional, Walencik-Łata, Agata, additional, and Kisiel, Jan, additional
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- 2021
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16. Underground laboratories in the Baltic Sea Region – EUL Project
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Kisiel, Jan, primary, Polaczek-Grelik, Kinga, additional, Walencik-Łata, Agata, additional, and Szkliniarz, Katarzyna, additional
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- 2021
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17. Neutrinos: Present and future of long baseline experiments
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Kisiel, Jan, primary
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- 2020
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18. Dlaczego Wszechświat składa się głównie z materii?
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Kłoskowicz, Małgorzata, primary, Kisiel, Jan, primary, and Bubak, Arkadiusz, primary
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- 2020
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19. Characteristics of natural radiation background at the Research and Education mine Reiche Zeche (Germany) performed within the BSUIN project.
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Szkliniarz, Katarzyna, primary, Polaczek-Grelik, Kinga, additional, Walencik-Łata, Agata, additional, Kisiel, Jan, additional, Mueller, Toni, additional, Schreiter, Falk, additional, and Hildebrandt, Robert, additional
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- 2020
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20. Characteristics of natural radiation background at the Callio Lab (Finland) performed within the BSUIN project
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Kisiel, Jan, primary, Polaczek-Grelik, Kinga, additional, Szkliniarz, Katarzyna, additional, Walencik-Łata, Agata, additional, Joutsenvaara, Jari, additional, Puputti, Hannah, additional, Holma, Marko, additional, and Enquist, Timo, additional
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- 2020
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21. Universal approach for risk identification and evaluation in underground facilities
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Pytel, Witold, primary, Fuławka, Krzysztof, additional, Pałac-Walko, Bogumiła, additional, Mertuszka, Piotr, additional, Kisiel, Jan, additional, Jalas, Panu, additional, Joutsenvaara, Jari, additional, and Shekov, Vitali, additional
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- 2020
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22. The BSUIN project
- Author
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Jedrzejczak, K., Debicki, Z., Kasztelan, M., Marszal, W., Orzechowski, J., Przybylak, M., Tokarski, P., Jalas, P., Isoherranen, V., Joutsenvaara, J., Niinikoski, E-R., Heikkila, R., Ahola, H., Aro, P., Vuorela, T., Kisiel, Jan, Karpa, K., and Szkilniarz, Katarzyna
- Subjects
Baltic Sea Region ,Baltic Sea Underground Innovation Network - Abstract
Baltic Sea Underground Innovation Network (BSUIN) is an European Union funded project that extends capabilities of underground laboratories. The aim of the project is to join efforts in making the underground laboratories in the Baltic Sea Region’s more accessible for innovation, business development and science by improving the availability of information about the underground facilities, service offerings, user experience, safety and marketing.The development of standards for the characterization of underground laboratories will allow to compared them with each other. This will help you choose the best places for physical measurements such as neutrino physics or searching for dark matter. The project concerns laboratories where so far no measurements have been made, and even undergrounds where there are no organized laboratories yet.The description of the BSUIN project and the first results of characterization of natural radioactive background in underground laboratories will be presented ˙ The BSUIN Project is funded by Interreg Baltic Sea funding cooperation [2].
- Published
- 2019
23. Search for CP Violation in Neutrino and Antineutrino Oscillations by the T2K Experiment with 2.2 × 1021 Protons on Target
- Author
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Abe, K., Akutsu, R., Ali, A., Amey, J., Andreopoulos, C., Anthony, L., Antonova, M., Aoki, S., Ariga, A., Ashida, Y., Azuma, Y., Ban, S., Barbi, M., Barker, G. J., Barr, G., Barry, C., Batkiewicz, M., Bench, F., Berardi, V., Berkman, S., Berner, R. M., Berns, L., Bhadra, S., Bienstock, S., Blondel, A., Bolognesi, S., Bourguille, B., Boyd, S. B., Brailsford, D., Bravar, A., Bronner, C., Buizza Avanzini, M., Calcutt, J., Campbell, T., Cao, S., Cartwright, S. L., Catanesi, M. G., Cervera, A., Chappell, A., Checchia, C., Cherdack, D., Chikuma, N., Christodoulou, G., Coleman, J., Collazuol, G., Coplowe, D., Cudd, A., Dabrowska, A., De Rosa, G., Dealtry, T., Denner, P. F., Dennis, S. R., Densham, C., Di Lodovico, F., Dokania, N., Dolan, S., Drapier, O., Duffy, K. E., Dumarchez, J., Dunne, P., Emery-Schrenk, S., Ereditato, A., Fernandez, P., Feusels, T., Finch, A. J., Fiorentini, G. A., Fiorillo, G., Francois, C., Friend, M., Fujii, Y., Fujita, R., Fukuda, D., Fukuda, Y., Gameil, K., Giganti, C., Gizzarelli, F., Golan, T., Gonin, M., Hadley, D. R., Haegel, L., Haigh, J. T., Hamacher-Baumann, P., Hansen, D., Harada, J., Hartz, M., Hasegawa, T., Hastings, N. C., Hayashino, T., Hayato, Y., Hiramoto, A., Hogan, M., Holeczek, Jacek, Hosomi, F., Ichikawa, A. K., Ikeda, M., Imber, J., Inoue, T., Intonti, R. A., Ishida, T., Ishii, T., Ishitsuka, M., Iwamoto, K., Izmaylov, A., Jamieson, B., Jiang, M., Johnson, S., Jonsson, P., Jung, C. K., Kabirnezhad, M., Kaboth, A. C., Kajita, T., Kakuno, H., Kameda, J., Karlen, D., Katori, T., Kato, Y., Kearns, E., Khabibullin, M., Khotjantsev, A., Kim, H., Kim, J., King, S., Kisiel, Jan, Knight, A., Knox, A., Kobayashi, T., Koch, L., Koga, T., Koller, P. P., Konaka, A., Kormos, L. L., Koshio, Y., Kowalik, K., Kubo, H., Kudenko, Y., Kurjata, R., Kutter, T., Kuze, M., Labarga, L., Lagoda, J., Lamoureux, M., Lasorak, P., Laveder, M., Lawe, M., Licciardi, M., Lindner, T., Liptak, Z. J., Litchfield, R. P., Li, X., Longhin, A., Lopez, J. P., Lou, T., Ludovici, L., Lu, X., Magaletti, L., Mahn, K., Malek, M., Manly, S., Maret, L., Marino, A. D., Martin, J. F., Martins, P., Maruyama, T., Matsubara, T., Matveev, V., Mavrokoridis, K., Ma, W. Y., Mazzucato, E., McCarthy, M., McCauley, N., McFarland, K. S., McGrew, C., Mefodiev, A., Metelko, C., Mezzetto, M., Minamino, A., Mineev, O., Mine, S., Missert, A., Miura, M., Moriyama, S., Morrison, J., Mueller, Th. A., Murphy, S., Nagai, Y., Nakadaira, T., Nakahata, M., Nakajima, Y., Nakamura, K. G., Nakamura, K., Nakamura, K. D., Nakanishi, Y., Nakayama, S., Nakaya, T., Nakayoshi, K., Nantais, C., Nielsen, C., Niewczas, K., Nishikawa, K., Nishimura, Y., Nonnenmacher, T. S., Novella, P., Nowak, J., O’Keeffe, H. M., O’Sullivan, L., Okumura, K., Okusawa, T., Oryszczak, W., Oser, S. M., Owen, R. A., Oyama, Y., Palladino, V., Palomino, J. L., Paolone, V., Paudyal, P., Pavin, M., Payne, D., Pickering, L., Pidcott, C., Pinzon Guerra, E. S., Pistillo, C., Popov, B., Porwit, Kamil, Posiadala-Zezula, M., Pritchard, A., Quilain, B., Radermacher, T., Radicioni, E., Ratoff, P. N., Reinherz-Aronis, E., Riccio, C., Rondio, E., Rossi, B., Roth, S., Rubbia, A., Ruggeri, A. C., Rychter, A., Sakashita, K., Sánchez, F., Sasaki, S., Scantamburlo, E., Scholberg, K., Schwehr, J., Scott, M., Seiya, Y., Sekiguchi, T., Sekiya, H., Sgalaberna, D., Shah, R., Shaikhiev, A., Shaker, F., Shaw, D., Shiozawa, M., Smirnov, A., Smy, M., Sobczyk, J. T., Sobel, H., Sonoda, Y., Steinmann, J., Stewart, T., Stowell, P., Suda, Y., Suvorov, S., Suzuki, A., Suzuki, S. Y., Suzuki, Y., Sztuc, A. A., Tacik, R., Tada, M., Takeda, A., Takeuchi, Y., Tamura, R., Tanaka, H. K., Tanaka, H. A., Thakore, T., Thompson, L. F., Toki, W., Touramanis, C., Tsui, K. M., Tsukamoto, T., Tzanov, M., Uchida, Y., Uno, W., Vagins, M., Vallari, Z., Vasseur, G., Vilela, C., Vladisavljevic, T., Volkov, V. V., Wachala, T., Walker, J., Wang, Y., Wark, D., Wascko, M. O., Weber, A., Wendell, R., Wilking, M. J., Wilkinson, C., Wilson, J. R., Wilson, R. J., Wret, C., Yamada, Y., Yamamoto, K., Yamasu, S., Yanagisawa, C., Yang, G., Yano, T., Yasutome, K., Yen, S., Yershov, N., Yokoyama, M., Yoshida, T., Yu, M., Zalewska, A., Zalipska, J., Zaremba, K., Zarnecki, G., Ziembicki, M., Zimmerman, E. D., Zito, M., Zsoldos, S., and Zykova, A.
- Subjects
CP violation ,neutrino oscillation ,antineutrino oscillation - Abstract
The T2K experiment measures muon neutrino disappearance and electron neutrino appearance in accelerator-produced neutrino and antineutrino beams. With an exposure of 14.7ð7.6Þ × 1020 protons on target in the neutrino (antineutrino) mode, 89 νe candidates and seven anti-νe candidates are observed, while 67.5 and 9.0 are expected for δCP ¼ 0 and normal mass ordering. The obtained 2σ confidence interval for the CP-violating phase, δCP, does not include the CP-conserving cases (δCP ¼ 0, π). The bestfit values of other parameters are sin2 θ23¼ 0.526þ0.032−0.036 and Δm232¼ 2.463þ0.071−0.070 × 10−3 eV2=c4.
- Published
- 2018
24. Two-particle correlations in azimuthal angle and pseudorapidity in inelastic p + p interactions at the CERN Super Proton Synchrotron
- Author
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Aduszkiewicz, Antoni, Ali, Yasir T.B., Andronov, Evgeny V., Antičić, Tome, Antoniou, Nikolaos G., Baatar, B., Bay, Francesca, Blondel, Alain P., Bogomilov, Mariyan, Brandin, A., Bravar, Alessandro, Brzychczyk, Janusz, Bunyatov, S.A., Busygina, O., Christakoglou, Panagiotis, Ćirković, M., Czopowicz, Tobiasz, Damyanova, Antoaneta, Davis, Nikolaos N., Dembinski, Hans P., Deveaux, Michael, Diakonos, Fotios K., di Silvestro, Luise, Dominik, Wojciech, Dumarchez, Jacques, Engel, Ralph, Ereditato, Antonio, Feofilov, Grigory A., Fodor, Z., Garibov, A., Gaździcki, Marek, Golubeva, Marina B., Grebieszkow, Katarzyna, Grzeszczuk, A., Guber, Fedor F., Haesler, A., Hasegawa, Takuya, Hervé, Alexander E., Hierholzer, M., Hylen, James E., Igolkin, Sergey N., Ivashkin, Alexander P., Johnson, Scott R., Kadija, K., Kapoyannis, A., Kaptur, Emil, Kiełbowicz, Mirosław M., Kisiel, Jan, Knezević, N., Kobayashi, Takashi, Kolesnikov, V.I., Kolev, Dimitar I., Kondratiev, Valery P., Korzenev, Alexander N., Kovalenko, Maksym V., Kowalik, Katarzyna L., Kowalski, Seweryn, Koziel, Michal, Krasnoperov, Alexei V., Kurepin, Alexey B., Larsen, Dag T., László, András, Lewicki, MacIej P., Lundberg, Björn G., Lyubushkin, Vladimir V., Maćkowiak-Pawłowska, Maja, Maksiak, Bartosz, Malakhov, Alexander I., Manić, Dimitrije J., Marchionni, Alberto, Marcinek, Antoni, Marino, Alysia D., Márton, Krisztina, Mathes, Hermann J., Matulewicz, Tomasz, Matveev, Viktor A., Melkumov, Georgy L., Merzlaya, Anastasia O., Messerly, B., Mills, Geoffrey B., Morozov, Sergey V., Mrówczyński, Stanisław, Nagai, Yoshikazu, Nakadaira, Takeshi, Naskrȩt, Michał, Nirkko, M., Nishikawa, Koichiro, Ozvenchuk, Vitalii, Panagiotou, Apostolos D., Paolone, Vittorio S., Pavin, M., Petukhov, Oleg A., Pistillo, Ciro, Płaneta, Roman, Popov, Boris A., Posiadała, Magdalena Z., Puławski, Szymon, Rameika, R., Rauch, Wolfgang, Ravonel, M., Redij, Asmita, Renfordt, Rainer E., Richter-Wa̧s, Elzbieta, Robert, Arnau, Röhrich, Dieter, Rondio, Ewa, Roth, Markus, Rubbia, André, Rumberger, B.T., Rustamov, Anar, Rybczynski, M., Rybicki, Andrzej, Sadovsky, Alexander S., Sakashita, Ken, Sarnecki, R., Schmidt, Katarzyna H., Sekiguchi, Tetsuro, Selyuzhenkov, Ilya V., Seryakov, Andrey Y., Seyboth, Peter, Sgalaberna, Davide, Shibata, Masahiro, Słodkowski, Marcin, Staszel, Paweł, Stefanek, Grzegorz, Steṕaniak, Joanna, Ströbele, Herbert, Šuša, Tatjana, Szuba, Marek, Tada, Munehiro, Taranenko, A., Tefelska, A., Tefelski, Dariusz B., Tereshchenko, V.V., Tsenov, Roumen, Turko, Ludwik, Unger, Michael, Vassiliou, Maria, Veberič, Darko, Vechernin, Vladimir V., Vesztergombi, György, Vinogradov, Leonid I., Walewski, M., Wickremasinghe, A., Wilczek, Andrzej, Włodarczyk, Zbigniew, Wojtaszek-Szwarć, A., Wyszyński, Oskar, Zambelli, Laura, Zimmerman, Esther D., and Zwaska, Robert M.
- Subjects
Astrophysics::High Energy Astrophysical Phenomena ,High Energy Physics::Experiment ,Nuclear Experiment - Abstract
Results on two-particle ΔηΔϕ correlations in inelastic p + p interactions at 20, 31, 40, 80, and 158 GeV/c are presented. The measurements were performed using the large acceptance NA61/SHINE hadron spectrometer at the CERN Super Proton Synchrotron. The data show structures which can be attributed mainly to effects of resonance decays, momentum conservation, and quantum statistics. The results are compared with the Epos and UrQMD models., The European Physical Journal C, 77 (2), ISSN:1434-6044, ISSN:1434-6052
- Published
- 2017
- Full Text
- View/download PDF
25. Measurements of π± differential yields from the surface of the T2K replica target for incoming 31 GeV/c protons with the NA61/SHINE spectrometer at the CERN SPS
- Author
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Abgrall, N., Aduszkiewicz, A., Ali, Y., Andronov, E., Antićić, T., Antoniou, N., Baatar, B., Bay, F., Blondel, A., Blumer, J., Bogomilov, M., Tefelski, D., Tereshchenko, V., Tsenov, R., Turko, L., Ulrich, R., Unger, M., Bunyatov, S.A., Vassiliou, M., Veberic, D., Vechernin, V.V., Kaptur, Emil, Vesztergombi, G., Vinogradov, L., Wilczek, Andrzej, Włodarczyk, Z., Wojtaszek-Szwarc, A., Wyszyński, O., Yarritu, K., Busygina, O., Zambelli, L., Zimmerman, E.D., Kiełczewska, D., Christakoglou, P., Czopowicz, T., Damyanova, A., Davis, N., Debieux, S., Dembinski, H., Deveaux, M., Diakonos, F., Di Luise, S., Dominik, W., Kisiel, Jan, Drozhzhova, T., Dumarchez, J., Dynowski, K., Engel, R., Ereditato, A., Feofilov, G.A., Fodor, Z., Gaździcki, M., Golubeva, M., Grebieszkow, K., Kobayashi, T., Grzeszczuk, Andrzej, Guber, F., Haesler, A., Hasegawa, T., Herve, A., Hierholzer, M., Igolkin, S., Ivashkin, A., Joković, D., Johnson, S.R., Kolesnikov, V.I., Kadija, K., Kapoyannis, A., Kolev, D., Kondratiev, V. P., Korzenev, A., Kowalik, K., Kowalski, Seweryn, Puzovic, J., Koziel, M., Krasnoperov, A., Kuich, M., Kurepin, A., Larsen, D., Laszlo, A., Lewicki, M., Lyubushkin, V. V., Maćkowiak-Pawłowska, M., Majka, Z., Rauch, W., Maksiak, B., Malakhov, A.I., Marchionni, A., Manic, D., Marcinek, A., Marino, A.D., Marton, K., Mathes, H.-J., Matulewicz, T., Matveev, V., Ravonel, M., Melkumov, G.L., Messerly, B., Mills, G.B., Morozov, S., Mrówczyński, S., Murphy, S., Nagai, Y., Nakadaira, T., Naskręt, M., Nirkko, M., Redij, A., Nishikawa, K., Palczewski, T., Panagiotou, A.D., Paolone, V., Pavin, M., Petukhov, O., Pistillo, C., Płaneta, R., Pluta, J., Popov, B.A., Renfordt, R., Posiadała-Zezula, M., Puławski, Szymon, Richter-Was, E., Robert, A., Röhrich, D., Rondio, E., Roth, M., Brandin, A., Rubbia, A., Rumberger, B.T., Rustamov, A., Rybczynski, M., Sadovsky, A., Sarnecki, R., Sakashita, K., Schmidt, Katarzyna, Sekiguchi, T., Selyuzhenkov, I., Bravar, A., Seryakov, A., Seyboth, P., Sgalaberna, D., Shibata, M., Słodkowski, M., Staszel, P., Stefanek, G., Stepaniak, J., Strobele, H., Susa, T., Brzychczyk, J., Szuba, M., Tada, M., Taranenko, A., and Tefelska, A.
- Subjects
Neutrino Experiment ,Physics::Instrumentation and Detectors ,SPS Heavy Ion ,Astrophysics::High Energy Astrophysical Phenomena ,NA61/SHINE measurements ,High Energy Physics::Experiment ,Nuclear Experiment - Abstract
Measurements of particle emission from a replica of the T2K 90 cm-long carbon target were performed in the NA61/SHINE experiment at CERN SPS, using data collected during a high-statistics run in 2009. An efficient use of the long-target measurements for neutrino flux predictions in T2K requires dedicated reconstruction and analysis techniques. Fully-corrected differential yields of π±-mesons from the surface of the T2K replica target for incoming 31 GeV/c protons are presented. A possible strategy to implement these results into the T2K neutrino beam predictions is discussed and the propagation of the uncertainties of these results to the final neutrino flux is performed.
- Published
- 2016
26. Measurements of π± differential yields from the surface of the T2K replica target for incoming 31 GeV/c protons with the NA61/SHINE spectrometer at the CERN SPS
- Author
-
Aduszkiewicz, A., Ajaz, M., Ali, Y., Andronov, E., Antićić, T., Antoniou, N., Baatar, B., Bay, F., Blondel, A., Blümer, J., Bogomilov, M., Renfordt, R., Tsenov, R., Richter-Wąs, E., Robert, A., Rumberger, B.T., Rustamov, A., Rybczynski, M., Sadovsky, A., Sakashita, K., Brandin, A., Suzuki, K., Sarnecki, R., Schmidt, Katarzyna, Turko, L., Sekiguchi, T., Selyuzhenkov, I., Seryakov, A., Seyboth, P., Sgalaberna, D., Shibata, M., Słodkowski, M., Johnson, S.R., Staszel, P., Bravar, A., Stefanek, G., Ulrich, R., Stepaniak, J., Ströbele, H., Šuša, T., Szuba, M., Tada, M., Taranenko, A., Tzanov, M., Tefelska, A., Tefelski, D., Unger, M., Vassiliou, M., Veberić, D., Vechernin, V.V., Vesztergombi, G., Igolkin, S., Vinogradov, L., Wilczek, Andrzej, Yu, M., Bunyatov, S.A., Włodarczyk, Z., Wojtaszek-Szwarc, A., Wyszyński, O., Yarritu, K., Zambelli, L., Zimmerman, E.D., Friend, M., Ivashkin, A., Galymov, V., Christakoglou, P., Hartz, M., Hiraki, T., Busygina, O., Ichikawa, A., Kubo, H., Matsuoka, K., Murakami, A., Nakaya, T., Ćirković, M., Czopowicz, T., Davis, N., Debieux, S., Dembinski, H., Mathes, H.-J., Deveaux, M., Diakonos, F., Kadija, K., Di Luise, S., Dominik, W., Dumarchez, J., Dynowski, K., Engel, R., Ereditato, A., Feofilov, G.A., Roth, M., Fodor, Z., Garibov, A., Gaździcki, M., Kapoyannis, A., Golubeva, M., Grebieszkow, K., Grzeszczuk, Andrzej, Guber, F., Haesler, A., Hasegawa, T., Matulewicz, T., Hervé, A.E., Hierholzer, M., Kaptur, Emil, Kisiel, Jan, Kobayashi, T., Kolesnikov, V.I., Kolev, D., Röhrich, D., Kondratiev, V. P., Korzenev, A., Matveev, V., Kowalik, K., Kowalski, Seweryn, Koziel, M., Krasnoperov, A., Kuich, M., Kurepin, A., Larsen, D., László, A., Rondio, E., Lewicki, M., Melkumov, G.L., Lyubushkin, V.V., Maćkowiak-Pawłowska, M., Maksiak, B., Malakhov, A.I., Manić, D., Marcinek, A., Marino, A.D., Marton, K., Messerly, B., Mills, G.B., Morozov, S., Mrówczyński, S., Nagai, Y., Tereshchenko, V., Nakadaira, T., Naskręt, M., Rubbia, A., Nirkko, M., Nishikawa, K., Panagiotou, A.D., Paolone, V., Pavin, M., Petukhov, O., Pistillo, C., Brzychczyk, J., Płaneta, R., Popov, B.A., Posiadała-Zezula, M., Abgrall, N., Puławski, Szymon, Puzović, J., Rauch, W., Ravonel, M., and Redij, A.
- Subjects
differential yields ,Physics::Instrumentation and Detectors ,Astrophysics::High Energy Astrophysical Phenomena ,Measurements ,High Energy Physics::Experiment ,Nuclear Experiment - Abstract
Measurements of particle emission from a replica of the T2K 90 cm-long carbon target were performed in the NA61/SHINE experiment at CERN SPS, using data collected during a high-statistics run in 2009. An efficient use of the long-target measurements for neutrino flux predictions in T2K requires dedicated reconstruction and analysis techniques. Fully-corrected differential yields of π ± -mesons from the surface of the T2K replica target for incoming 31 GeV/c protons are presented. A possible strategy to implement these results into the T2K neutrino beam predictions is discussed and the propagation of the uncertainties of these results to the final neutrino flux is performed.
- Published
- 2016
- Full Text
- View/download PDF
27. Measurements of [pi] +/-, K+/-, K 0/S, [lambda] and proton production in proton–carbon interactions at 31 GeV/c with the NA61/SHINE spectrometer at the CERN SPS
- Author
-
Abgrall, N., Aduszkiewicz, A., Ali, Y., Anticic, T., Antoniou, N., Baatar, B., Bay, F., Blondel, A., Blumer, J., Bogomilov, M., Brandin, A., Bravar, A., Brzychczyk, J., Bunyatov, S. A., Busygina, O., Christakoglou, P., Czopowicz, T., Damyanova, A., Davis, N., Debieux, S., Dembinski, H., Deveaux, M., Diakonos, F., Di Luise, S., Dominik, W., Drozhzhova, T., Dumarchez, J., Dynowski, K., Engel, R., Ereditato, E., Feofilov, G. A., Fodor, Z., Gaździcki, M., Golubeva, M., Grebieszkow, K., Grzeszczuk, Andrzej, Guber, F., Haesler, A., Hasegawa, T., Herve, A., Hierholzer, M., Igolkin, S., Ivashkin, A., Jokovic, D., Johnson, S. R., Kadija, K., Kapoyannis, A., Kaptur, Emil, Kiełczewska, D., Kisiel, Jan, Kobayashi, T., Kolesnikov, V. I., Kolev, D., Kondratiev, V. P., Korzenev, A., Kowalik, K., Kowalski, Seweryn, Koziel, M., Krasnoperov, A., Kuich, M., Kurepin, A., Larsen, D., Laszlo, A., Lewicki, M., Lyubushkin, V. V., Maćkowiak-Pawłowska, M., Majka, Z., Maksiak, B., Malakhov, A. I., Marchionni, A., Manic, D., Marcinek, A., Marino, A. D., Marton, K., Mathes, H.-J., Matulewicz, T., Matveev, V., Melkumov, G. L., Messerly, B., Mills, G. B., Morozov, S., Mrówczyński, S., Murphy, S., Nagai, Y., Nakadaira, T., Naskret, M., Nirkko, M., Nishikawa, K., Palczewski, T., Panagiotou, A. D., Paolone, V., Pavin, M., Petukhov, O., Pistillo, C., Płaneta, R., Pluta, J., Popov, B. A., Posiadała-Zezula, M., Puławski, Szymon, Puzovic, J., Rauch, W., Ravonel, M., Redij, A., Renfordt, R., Richter-Wąs, E., Robert, A., Röhrich, D., Rondio, E., Roth, M., Rubbia, A., Rumberger, B. T., Rustamov, A., Rybczyński, M., Sadovsky, A., Sakashita, K., Sarnecki, R., Schmidt, Katarzyna, Sekiguchi, T., Selyuzhenkov, I., Seryakov, A., Seyboth, P., Sgalaberna, D., Shibata, M., Słodkowski, M., Staszel, P., Stefanek, G., Stepaniak, J., Strobele, H., Susa, T., Szuba, M., Tada, M., Taranenko, A., Tefelska, A., Tefelski, D., Tereshchenko, V., Tsenov, R., Turko, L., Ulrich, R., Unger, M., Vassiliou, M., Veberic, D., Vechernin, V. V., Vesztergombi, G., Vinogradov, L., Wilczek, Andrzej, Włodarczyk, Z., Wojtaszek-Szwarc, A., Wyszyński, O., Yarritu, K., Zambelli, L., and Zimmerman, E. D.
- Subjects
Physics::Instrumentation and Detectors ,Astrophysics::High Energy Astrophysical Phenomena ,neutrinos ,cross sections ,High Energy Physics::Experiment ,neutrino scattering ,Nuclear Experiment - Abstract
Measurements of hadron production in p + C interactions at 31 GeV/c are performed using the NA61/SHINE spectrometer at the CERN SPS. The analysis is based on the full set of data collected in 2009 using a graphite target with a thickness of 4 % of a nuclear interaction length. Inelastic and production cross sections as well as spectra of (Formula presented.) , (Formula presented.) , p, (Formula presented.) and (Formula presented.) are measured with high precision. These measurements are essential for improved calculations of the initial neutrino fluxes in the T2K long-baseline neutrino oscillation experiment in Japan. A comparison of the NA61/SHINE measurements with predictions of several hadroproduction models is presented.
- Published
- 2016
28. Production of Λ-hyperons in inelastic p+p interactions at 158 GeV/c
- Author
-
Aduszkiewicz, A., Ali, Y., Andronov, E., Antićić, T., Antoniou, N., Baatar, B., Bay, F., Blondel, A., Bogomilov, M., Brandin, A., Bravar, A., Lyubushkin, V.V., Maćkowiak-Pawłowska, M., Maksiak, B., Malakhov, A.I., Manić, D., Marcinek, A., Marino, A.D., Marton, K., Mathes, H.-J., Matulewicz, T., Roth, M., Matveev, V., Melkumov, G.L., Messerly, B., Mills, G.B., Morozov, S., Mrówczyński, S., Nagai, Y., Nakadaira, T., Naskręt, M., Nirkko, M., Rubbia, A., Nishikawa, K., Panagiotou, A.D., Paolone, V., Pavin, M., Petukhov, O., Pistillo, C., Płaneta, R., Popov, B.A., Posiadała, M., Puławski, Szymon, Rumberger, B.T., Puzović, J., Rauch, W., Ravonel, M., Redij, A., Renfordt, R., Richter-Wąs, E., Robert, A., Rohrich, D., Rondio, E., Rustamov, A., Rybczynski, M., Sadovsky, A., Sakashita, K., Schmidt, Katarzyna, Sekiguchi, T., Selyuzhenkov, I., Brzychczyk, J., Seryakov, A., Seyboth, P., Sgalaberna, D., Shibata, M., Słodkowski, M., Staszel, P., Stefanek, G., Stepaniak, J., Strobele, H., Susa, T., Bunyatov, S.A., Szuba, M., Tada, M., Taranenko, A., Tefelski, D., Tereshchenko, V., Tsenov, R., Turko, L., Ulrich, R., Unger, M., Vassiliou, M., Busygina, O., Veberic, D., Vechernin, V.V., Vesztergombi, G., Vinogradov, L., Wilczek, Andrzej, Włodarczyk, Z., Wojtaszek-Szwarc, A., Wyszyński, O., Zambelli, L., Christakoglou, P., Cirkovic, M., Czopowicz, T., Damyanova, A., Davis, N., Dembinski, H., Deveaux, M., Diakonos, F., Di Luise, S., Dominik, W., Dumarchez, J., Dynowski, K., Engel, R., Ereditato, A., Feofilov, G.A., Fodor, Z., Garibov, A., Gaździcki, M., Golubeva, M., Grebieszkow, K., Grzeszczuk, Andrzej, Guber, F., Haesler, A., Hasegawa, T., Herve, A.E., Hierholzer, M., Igolkin, S., Ivashkin, A., Johnson, S.R., Kadija, K., Kapoyannis, A., Kaptur, Emil, Kisiel, Jan, Kobayashi, T., Kolesnikov, V.I., Kolev, D., Kondratiev, V. P., Korzenev, A., Kowalik, K., Kowalski, Seweryn, Koziel, M., Krasnoperov, A., Kuich, M., Kurepin, A., Larsen, D., Laszlo, A., and Lewicki, M.
- Subjects
P+P interactions ,Strange-particle-production ,High Energy Physics::Experiment ,Collisions ,Nuclear Experiment - Abstract
Inclusive production of {n-ary logical and}-hyperons was measured with the large acceptance NA61/SHINE spectrometer at the CERN SPS in inelastic p+p interactions at beam momentum of 158GeV/c. Spectra of transverse momentum and transverse mass as well as distributions of rapidity and xF are presented. The mean multiplicity was estimated to be 0.120ï+/-0.006 (stat.) +/-0.010 (sys.). The results are compared with previous measurements and predictions of the Epos, Urqmd and Fritiof models.
- Published
- 2016
29. Measurement of the [ni][mi] charged-current quasielastic cross section on carbon with the ND280 detector at T2K
- Author
-
Abe, K., Adam, J., Aihara, T., Andreopoulos, C., Ariga, A., Assylbekov, S., Autiero, D., Barbi, M., Barker, G. J., Barr, G., Bass, M., Batkiewicz, M., Bay, F., Berardi, V., Berger, B. E., Berkman, S., Bhadra, S., Blaszczyk, F. D. M., Blondel, A., Bojechko, C., Bolognesi, S., Bordoni, S., Boyd, S. B., Brailsford, D., Bravar, A., Bronner, C., Buchanan, N., Calland, R. G., Caravaca Rodríguez, J., Cartwright, S. L., Castillo, R., Catanesi, M. G., Cervera, A., Cherdack, D., Christodoulou, G., Clifton, A., Coleman, J., Coleman, S. J., Collazuol, G., Connolly, K., Cremonesi, L., Dąbrowska, A., Danko, I., Das, R., Davis, S., De Perio, P., De Rosa, G., Dealtry, T., Dennis, S. R., Densham, C., Dewhurst, D., Di Lodovico, F., Di Luise, S., Dolan, S., Drapier, O., Duboyski, T., Duffy, K., Dumarchez, J., Dytman, S., Dziewiecki, M., Emery-Schrenk, S., Ereditato, A., Escudero, L., Feusels, T., Finch, A. J., Fiorentini, G. A., Friend, M., Fujii, Y., Fukuda, Y., Furmanski, A. P., Galymov, V., Garcia, A., Giffin, S., Gilje, K., Goeldi, D., Golan, T., Gonin, M., Grant, N., Gudin, D., Hadley, D. R., Haegel, L., Haesler, A., Haigh, M. D., Hamilton, P., Hansen, D., Hara, T., Hartz, M., Hasegawa, T., Hastings, N. C., Hayashino, T., Hayato, Y., Hearty, C., Helmer, R. L., Hierholzer, M., Hignight, J., Hillairet, A., Himmel, A., Hiraki, T., Hirota, S., Holeczek, Jacek, Horikawa, S., Huang, K., Ichikawa, A. K., Ieki, K., Ieva, M., Ikeda, M., Imber, J., Insler, J., Irvine, T. J., Ishida, T., Ishii, T., Iwai, E., Iwamoto, K., Iyogi, K., Izmaylov, A., Jacob, A., Jamieson, B., Jiang, M., Johnson, S., Jo, H. J., Jonsson, P., Jung, C. K., Kabirnezhad, M., Kaboth, A. C., Kajita, T., Kakuno, H., Kameda, J., Kanazawa, Y., Karlen, D., Karpikov, I., Katori, T., Kearns, E., Khabibullin, M., Khotjantsev, A., Kielczewska, D., Kikawa, T., Kilinski, A., Kim, J., King, S., Kisiel, Jan, Kitching, P., Kobayashi, T., Koch, L., Kolaceke, A., Konaka, A., Kormos, L. L., Korzenev, A., Koshio, Y., Kropp, W., Kubo, H., Kudenko, Y., Kurjata, R., Kutter, T., Lagoda, J., Lamont, I., Larkin, E., Laveder, M., Lawe, M., Lazos, M., Lindner, T., Lister, C., Litchfield, R. P., Longhin, A., Lopez, J. P., Ludovici, L., Magaletti, L., Mahn, K., Malek, M., Manly, S., Marino, A. D., Marteau, J., Martin, J. F., Martins, P., Martynenko, S., Maruyama, T., Matveev, V., Mavrokoridis, K., Mazzucato, E., McCarthy, M., McCauley, N., McFarland, K. S., McGrew, C., Mefodiev, A., Metelko, C., Mezzetto, M., Mijakowski, P., Miller, C. A., Minamino, A., Mineev, O., Missert, A., Miura, M., Moriyama, S., Mueller, Th. A., Murakami, A., Murdoch, M., Murphy, S., Myslik, J., Nakadaira, T., Nakahata, M., Nakamura, K. G., Nakamura, K., Nakayama, S., Nakaya, T., Nakayoshi, K., Nantais, C., Nielsen, C., Nirkko, M., Nishikawa, K., Nishimura, Y., Nowak, J., O'Keeffe, H. M., Ohta, R., Okumura, K., Okusawa, T., Oryszczak, W., Oser, S. M., Ovsyannikova, T., Owen, R. A., Oyama, Y., Palladino, V., Palomino, J. L., Paolone, V., Payne, D., Perevozchikov, O., Perkin, J. D., Petrov, Y., Pickard, L., Pinzon Guerra, E. S., Pistillo, C., Płoński, P., Popławska, E., Popov, B., Posiadała-Zezula, M., Poutissou, J. M., Poutissou, R., Przewłocki, P., Quilain, B., Radicioni, E., Ratoff, P. N., Ravonel, M., Rayner, M. A. M., Redij, A., Reeves, M., Reinherz-Aronis, E., Riccio, C., Rodrigues, P. A., Rojas, P., Rondio, E., Roth, S., Rubbia, A., Ruterbories, D., Sacco, R., Sakashita, K., Sánchez, F., Sato, F., Scantamburlo, E., Scholberg, K., Schoppmann, S., Schwehr, J., Scott, M., Seiya, Y., Sekiguchi, T., Sekiya, H., Sgalaberna, D., Shah, R., Shaker, F., Shaw, D., Shiozawa, M., Short, S., Shustrov, Y., Sinclair, P., Smith, B., Smy, M., Sobczyk, J. T., Sobel, H., Sorel, M., Southwell, L., Stamoulis, P., Steinmann, J., Still, B., Suda, Y., Suzuki, A., Suzuki, K., Suzuki, S. Y., Suzuki, Y., Tacik, R., Tada, M., Takahashi, S., Takeda, A., Takeuchi, Y., Tanaka, H. K., Tanaka, H. A., Tanaka, M. M., Terhorst, D., Terri, R., Thompson, L. F., Thorley, A., Tobayama, S., Toki, W., Tomura, T., Totsuka, Y., Touramanis, C., Tsukamoto, T., Tzanov, M., Uchida, Y., Vacheret, A., Vagins, M., Vasseur, G., Wąchała, T., Wakamatsu, K., Walter, C. W., Wark, D., Warzycha, W., Wascko, M. O., Weber, A., Wendell, R., Wilkes, R. J., Wilking, M. J., Wilkinson, C., Williamson, Z., Wilson, J. R., Wilson, R. J., Wongjirad, T., Yamada, Y., Yamamoto, K., Yanagisawa, C., Yano, T., Yen, S., Yershov, N., Yokoyama, M., Yoshida, K., Yuan, T., Yu, M., Zalewska, A., Zalipska, J., Zambelli, L., Zaremba, K., Ziembicki, M., Zimmerman, E. D., Zito, M., and Żmuda, J.
- Subjects
neutrinos ,cross sections ,neutrino scattering - Abstract
This paper reports a measurement by the T2K experiment of the νμ charged current quasielastic (CCQE) cross section on a carbon target with the off-axis detector based on the observed distribution of muon momentum (pμ) and angle with respect to the incident neutrino beam (θμ). The flux-integrated CCQE cross section was measured to be hσi ¼ ð0.83 0.12Þ × 10−38 cm2. The energy dependence of the CCQE cross section is also reported. The axial mass, MQE A , of the dipole axial form factor was extracted assuming the Smith-Moniz CCQE model with a relativistic Fermi gas nuclear model. Using the absolute (shape-only) pμ- cos θμ distribution, the effective MQE A parameter was measured to be 1.26þ0.21−0.18GeV=c2(1.43þ0.28−0.22 GeV=c2).
- Published
- 2015
30. Lead shielding efficiency from the gamma background measurements in the salt cavern of the Polkowice–Sieroszowice copper mine
- Author
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Polaczek-Grelik, Kinga, primary, Kisiel, Jan, additional, Walencik-Łata, Agata, additional, Mietelski, Jerzy W., additional, Janowski, Paweł, additional, Harańczyk, Małgorzata, additional, Jurkowski, Jan, additional, Zalewska, Agnieszka, additional, Kobziński, Jan, additional, Markowski, Paweł, additional, and Sadowski, Andrzej, additional
- Published
- 2015
- Full Text
- View/download PDF
31. Natural background measurements: pilot measurements from BSUIN underground laboratories.
- Author
-
Joutsenvaara, Jari, Enqvist, Timo, Karjalainen, Henna-Maria, Jalas, Panu, Puputti, Julia, Loo, Kai, Kisiel, Jan, Polaczek-Grelik, Kinga, Szkliniarz, Katarzyna, Walencik-Łata, Agata, Djakonow, Aneta, Jedrzejczak, Karol, Kasztelan, Marcin, Orzechowski, Jerzy, Marszał, Wlodzimierz, Szabelski, Jacek, Gostilo, Vladimir, Pohuliai, Serhii, and Sokolov, Aleksandrs
- Published
- 2019
32. Neutrino beam simulations and background studies for the SUNLAB location in Poland
- Author
-
Harańczyk, Małgorzata, Zalewska, Agnieszka, Kisiel, Jan, and Wójcik, Marcin
- Subjects
neutrino ,Standard Model ,High Energy Physics::Phenomenology ,High Energy Physics::Experiment - Abstract
The main purpose of this thesis is to explore the opportunities which would be provided by the Sieroszowice Underground Laboratory SUNLAB, located in the Polkowice-Sieroszowice mine in the Lower Silesia province in Poland, to discover the CP violation in the neutrino sector. This discovery would be a milestone on the road to understanding the observed dominance of matter over antimatter in the Universe, which is one of the fundamental questions of contemporary science.The motivation for the presented study is the current very exciting situation in neutrino physics. According to many physicists, the discovery of neutrino oscillations in the years 1998-2002 and their interpretation within the framework of three neutrino flavour mixing, awarded the 2015 Nobel Prize in physics, provides firm evidence for new physics beyond the Standard Model. Recently, the θ13 mixing angle has been determined to be moderately large. This makes it possible to use conventional high power neutrino beams in accelerator long baseline experiments to answer the remaining questions in neutrino oscillations, which are the neutrino mass hierarchy and the measurement of the CP-violating phase.
- Published
- 2016
33. Analysis of neutral pions from vµ CC CNGS interactions in the ICARUS detector
- Author
-
Kochanek, Izabela and Kisiel, Jan
- Subjects
Physics::Instrumentation and Detectors ,High Energy Physics::Experiment ,Argon ,detektory neutronów ,mezony ,neutrina - Abstract
The aim of the thesis is the study of the electromagnetic showers and neutral mesons in the ICARUS T600 Liquid Argon Time Projection Chamber. To accurately reconstruct energy of electromagnetic showers, different corrections to the collected charge are needed. In this thesis the author calibrated the energy reconstruction with a set of corrections, most of which are not present in the official ICARUS reconstruction software. For this goal, the simulation package FLUKA was extensively used in order to study the ionization quenching and the shower containment in the detector. As a result the reconstructed invariant ⇡0 masses are distributed compactly (" = 12 MeV/c2) with a best value equal to 134.5 ± 1.5 ± 4.2 MeV/c2. Moreover, other results on low energy electromagnetic showers in Liquid Argon were found which include the longitudinal profile parametrization, the conversion distance measurement and the ionization losses for 1 and 2 m.i.p. particles. This latest point is interesting for the e CC events selection from ⌫μ NC background.
- Published
- 2015
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