874 results on '"Caamaño, M."'
Search Results
102. Structure of 55Ti from relativistic one-neutron knockout
- Author
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Maierbeck, P., Gernhäuser, R., Krücken, R., Kröll, T., Alvarez-Pol, H., Aksouh, F., Aumann, T., Behr, K., Benjamim, E. A., Benlliure, J., Bildstein, V., Böhmer, M., Boretzky, K., Borge, M. J. G., Brünle, A., Bürger, A., Caamaño, M., Casarejos, E., Chatillon, A., Chulkov, L. V., Cortina-Gil, D., Enders, J., Eppinger, K., Faestermann, T., Friese, J., Fabbietti, L., Gascón, M., Geissel, H., Gerl, J., Gorska, M., Hansen, P. G., Jonson, B., Kanungo, R., Kiselev, O., Kojouharov, I., Klimkiewicz, A., Kurtukian, T., Kurz, N., Larsson, K., Bleis, T. Le, Mahata, K., Maier, L., Nilsson, T., Nociforo, C., Nyman, G., Pascual-Izarra, C., Perea, A., Perez, D., Prochazka, A., Rodriguez-Tajes, C., Rossi, D., Schaffner, H., Schrieder, G., Schwertel, S., Simon, H., Sitar, B., Stanoiu, M., Sümmerer, K., Tengblad, O., Weick, H., Winkler, S., Brown, B. A., Otsuka, T., Tostevin, J., and Rae, W. D. M.
- Subjects
Nuclear Experiment - Abstract
Results are presented from a one-neutron knockout reaction at relativistic energies on 56Ti using the GSI FRS as a two-stage magnetic spectrometer and the Miniball array for gamma-ray detection. Inclusive and exclusive longitudinal momentum distributions and cross-sections were measured enabling the determination of the orbital angular momentum of the populated states. First-time observation of the 955(6) keV nu p3/2-hole state in 55Ti is reported. The measured data for the first time proves that the ground state of 55Ti is a 1/2- state, in agreement with shell-model calculations using the GXPF1A interaction that predict a sizable N=34 gap in 54Ca., Comment: 12 pages, 3 figures, submitted to Physics Letters B 13 pages, 4 figures, resubmitted to Physics Letters B (major revision to meet the suggestions of the reviewers)
- Published
- 2008
- Full Text
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103. Clinical utility of tensiomyography for muscle function analysis in athletes
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García-García O, Cuba-Dorado A, Álvarez-Yates T, Carballo-López J, and Iglesias-Caamaño M
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TMG ,contractile properties ,elite athletes ,neuromuscular parameters ,muscle assessment ,muscle response. ,Sports medicine ,RC1200-1245 - Abstract
Oscar García-García, Alba Cuba-Dorado, Tania Álvarez-Yates, Javier Carballo-López, Mario Iglesias-CaamañoLaboratory of Sports Performance, Physical Condition and Wellness, Faculty of Education and Sport Sciences, University of Vigo, Pontevedra, SpainAbstract: An exhaustive review has been made to filter the studies that have analyzed muscle function though tensiomyography (TMG) with elite or well-trained athletes. The results of this review indicate that the several protocols used in athletes to find the displacement-time curve with greater maximum radial muscle displacement showed a good-excellent reliability. TMG has been used to characterize athletes’ muscles contractile properties from specific sports disciplines, although there are very few sports that have been deeply analyzed. TMG seems to be useful to determine changes in muscles contractile properties after stimuli of competition, training or recovery. These changes have been strongly related with the fatigue produced after an effort. In addition, TMG parameters could be used to control training effects during a specific period or throughout the season being also a very useful tool to individualize athletes training loads. In this sense, it also seems to provide sports performance information in cyclic sports by relating some TMG parameters with performance indicators. On the other hand, the TMG-BCM algorithm has been used as a lateral and functional symmetry measure and as a monitoring tool for injury prevention and recovery. However, it seems to be no clear criterion that determines asymmetry degree, nor established contractile properties values as a reference to prevent or recover sports injuries. Despite the utility shown in these fields, there are still very few sports analyzed and it is really necessary to continue advancing in the knowledge of the contractile properties behavior, such as the effects of athletes’ training, competitions and injuries and even in the parameters interpretation obtained with the TMG.Keywords: TMG, contractile properties, elite athletes, neuromuscular parameters, muscle assessment, muscle response
- Published
- 2019
104. Measurement of two-halo neutron transfer reaction p($^{11}$Li,$^{9}$Li)t at 3$A$ MeV
- Author
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Tanihata, I., Alcorta, M., Bandyopadhyay, D., Bieri, R., Buchmann, L., Davids, B., Galinski, N., Howell, D., Mills, W., Openshaw, R., Padilla-Rodal, E., Ruprecht, G., Sheffer, G., Shotter, A. C., Mythili, S., Trinczek, M., Walden, P., Savajols, H., Roger, T., Caamano, M., Mittig, W., Roussel-Chomaz, P., Kanungo, R., Gallant, A., Savard, G., and Thompson, I. J.
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Nuclear Experiment - Abstract
The p(\nuc{11}{Li},\nuc{9}{Li})t reaction has been studied for the first time at an incident energy of 3$A$ MeV delivered by the new ISAC-2 facility at TRIUMF. An active target detector MAYA, build at GANIL, was used for the measurement. The differential cross sectionshave been determined for transitions to the \nuc{9}{Li} ground andthe first excited states in a wide range of scattering angles. Multistep transfer calculations using different \nuc{11}{Li} model wave functions, shows that wave functions with strong correlations between the halo neutrons are the most successful in reproducing the observation., Comment: 6 pages, 3 figures, submitted to Physical Review Letters
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- 2008
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105. Characterization of 7H Nuclear System
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Caamano, M., Cortina-Gil, D., Mittig, W., Savajols, H., Chartier, M., Demonchy, C. E., Fernandez, B., Hornillos, M. B. Gomez, Gillibert, A., Jurado, B., Kiselev, O., Lemmon, R., Obertelli, A., Rejmund, F., Rejmund, M., Roussel-Chomaz, P., and Wolski, R.
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Nuclear Experiment - Abstract
The 7H resonance was produced via one-proton transfer reaction with a 8He beam at 15.4A MeV and a 12C gas target. The experimental setup was based on the active-target MAYA which allowed a complete reconstruction of the reaction kinematics. The characterization of the identified 7H events resulted in a resonance energy of 0.57(+0.42-0.21) MeV above the 3H+4n threshold and a resonance width of 0.09(+0.94-0.06) MeV., Comment: 4 pages, 4 figures
- Published
- 2007
106. Description and outlook of the 50,53Cr(n,γ) cross section measurement at n_TOF and HiSPANoS.
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Pérez-Maroto, P., Guerrero, C., Casanovas, A., Fernández, B., Aberle, O., Alcayne, V., Altieri, S., Amaducci, S., Andrzejewski, J., Babiano-Suarez, V., Bacak, M., Balibrea Correa, J., Beltrami, C., Bennett, S., Bernardes, A. P., Berthoumieux, E., Beyer, R., Boromiza, M., Bosnar, D., and Caamaño, M.
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NUCLEAR cross sections ,CHROMIUM ,NUCLEAR reactor safety measures ,NUCLEAR resonance reactions ,NEUTRON scattering measurement - Abstract
Chromium is a very relevant element regarding criticality safety in nuclear reactors because of its presence in stainless steel, an important structural material. Currently, there are serious discrepancies between the different evaluations regarding the neutron capture cross sections of
50 Cr and53 Cr, most probably related to the difficulty of reducing and then estimating the very large neutron scattering effects on the shape of the resonances. In this context, there is a recent entry in the Nuclear Energy Agency (NEA) High Priority Request List (HPRL) to measure these reactions between 1 and 100 keV with an accuracy of 8-10%. In response to this request, we have performed a time-of-flight experiment at CERN n_TOF (Switzerland) and a complementary activation experimenton50 Crat30and90keVatCNAHiSPANoS(Spain).Theexperiments are presented herein, together with a discussion on the quality of the preliminary data and the results to be expected. [ABSTRACT FROM AUTHOR]- Published
- 2024
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107. First observation of 54Zn and its decay by two-proton emission
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Blank, B., Bey, A., Canchel, G., Dossat, C., Fleury, A., Giovinazzo, J., Matea, I., Adimi, N., De Oliveira, F., Stefan, I., Georgiev, G., Grevy, S., Thomas, J. C., Borcea, C., Cortina, D., Caamano, M., Stanoiu, M., Aksouh, F., Brown, B. A., Barker, F. C., and Richter, W. A.
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Nuclear Experiment - Abstract
The nucleus 54Zn has been observed for the first time in an experiment at the SISSI/LISE3 facility of GANIL in the quasi-fragmentation of a 58Ni beam at 74.5 MeV/nucleon in a natNi target. The fragments were analysed by means of the ALPHA-LISE3 separator and implanted in a silicon-strip detector where correlations in space and time between implantation and subsequent decay events allowed us to generate almost background free decay spectra for about 25 different nuclei at the same time. Eight 54Zn implantation events were observed. From the correlated decay events, the half-life of 54Zn is determined to be 3.2 +1.8/-0.8 ms. Seven of the eight implantations are followed by two-proton emission with a decay energy of 1.48(2) MeV. The decay energy and the partial half-life are compared to model predictions and allow for a test of these two-proton decay models., Comment: 4 pages, 4 figures, accepted for publication in PRL
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- 2005
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108. Risk profiles and one-year outcomes of patients with newly diagnosed atrial fibrillation in India: Insights from the GARFIELD-AF Registry
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Kakkar, Ajay K., Bassand, Jean-Pierre, John Camm, A., Fitzmaurice, David A., Goldhaber, Samuel Z., Goto, Shinya, Haas, Sylvia, Hacke, Werner, Mantovani, Lorenzo G., Misselwitz, Frank, Pieper, Karen S., Turpie, Alexander G.G., van Eickels, Martin, Verheugt, Freek W.A., Kayani, Gloria, Fox, Keith A.A., Gersh, Bernard J., Luciardi, Hector Lucas, Gibbs, Harry, Brodmann, Marianne, Cools, Frank, Barretto, Antonio Carlos Pereira, Connolly, Stuart J., Spyropoulos, Alex, Eikelboom, John, Corbalan, Ramon, Hu, Dayi, Jansky, Petr, Nielsen, Jørn Dalsgaard, Ragy, Hany, Raatikainen, Pekka, Le Heuzey, Jean-Yves, Darius, Harald, Keltai, Matyas, Kakkar, Sanjay, Sawhney, Jitendra Pal Singh, Agnelli, Giancarlo, Ambrosio, Giuseppe, Koretsune, Yukihiro, Sánchez Díaz, Carlos Jerjes, Ten Cate, Hugo, Atar, Dan, Stepinska, Janina, Panchenko, Elizaveta, Lim, Toon Wei, Jacobson, Barry, Oh, Seil, Viñolas, Xavier, Rosenqvist, Marten, Steffel, Jan, Angchaisuksiri, Pantep, Oto, Ali, Parkhomenko, Alex, Al Mahmeed, Wael, Fitzmaurice, David, Hu, D.Y., Chen, K.N., Zhao, Y.S., Zhang, H.Q., Chen, J.Z., Cao, S.P., Wang, D.W., Yang, Y.J., Li, W.H., Yin, Y.H., Tao, G.Z., Yang, P., Chen, Y.M., He, S.H., Wang, Ying, Wang, Yong, Fu, G.S., Li, X., Wu, T.G., Cheng, X.S., Yan, X.W., Zhao, R.P., Chen, M.S., Xiong, L.G., Chen, P., Jiao, Y., Guo, Y., Xue, L., Wang, F.Z., Li, H., Yang, Z.M., Bai, C.L., Chen, J., Chen, J.Y., Chen, X., Feng, S., Fu, Q.H., Gao, X.J., Guo, W.N., He, R.H., He, X.A., Hu, X.S., Huang, X.F., Li, B., Li, J., Li, L., Li, Y.H., Liu, T.T., Liu, W.L., Liu, Y.Y., Lu, Z.C., Luo, X.L., Ma, T.Y., Peng, J.Q., Sheng, X., Shi, X.J., Sun, Y.H., Tian, G., Wang, K., Wang, L., Wu, R.N., Xie, Q., Xu, R.Y., Yang, J.S., Yang, L.L., Yang, Q., Ye, Y., Yu, H.Y., Yu, J.H., Yu, T., Zhai, H., Zhan, Q., Zhang, G.S., Zhang, Q., Zhang, R., Zhang, Y., Zheng, W.Y., Zhou, B., Zhou, Z.H., Zhu, X.Y., Kakkar, S., Sawhney, J.P.S., Jadhav, P., Durgaprasad, R., Ravi Shankar, A.G., Rajput, R.K., Bhargava, K., Sarma, R., Srinivas, A., Roy, D., Nagamalesh, U.M., Chopda, M., Kishore, R., Kulkarni, G., Chandwani, P., Pothiwala, R.A., Padinhare Purayil, M., Shah, S., Chawla, K., Kothiwale, V.A., Raghuraman, B., Vijayaraghavan, G., Vijan, V.M., Bantwal, G., Bisne, V., Khan, A., Gupta, J.B., Kumar, S., Jain, D., Abraham, S., Adak, D., Barai, A., Begum, H., Bhattacharjee, P., Dargude, M., Davies, D., Deshpande, B., Dhakrao, P., Dhyani, V., Duhan, S., Earath, M., Ganatra, A., Giradkar, S., Jain, V., Karthikeyan, R., Kasala, L., Kaur, S., Krishnappa, S., Lawande, A., Lokesh, B., Madarkar, N., Meena, R., More, P., Naik, D., Prashanth, K., Rao, M., Rao, N.M., Sadhu, N., Shah, D., Sharma, M., Shiva, P., Singhal, S., Suresh, S., Vanajakshamma, V., Panse, S.G., Koretsune, Y., Kanamori, S., Yamamoto, K., Kumagai, K., Katsuda, Y., Sadamatsu, K., Toyota, F., Mizuno, Y., Misumi, I., Noguchi, H., Ando, S., Suetsugu, T., Minamoto, M., Oda, Hiroshi, Shiraishi, K., Adachi, S., Chiba, K., Norita, H., Tsuruta, M., Koyanagi, T., Ando, H., Higashi, T., Okada, K., Azakami, S., Komaki, S., Kumeda, K., Murayama, T., Matsumura, J., Oba, Y., Sonoda, R., Goto, K., Minoda, K., Haraguchi, Y., Suefuji, H., Miyagi, H., Kato, H., Nakamura, Tadashi, Nakamura, Tsugihiro, Nandate, H., Zaitsu, R., Fujiura, Yoshihisa, Yoshimura, A., Numata, H., Ogawa, J., Tatematsu, H., Kamogawa, Y., Murakami, K., Wakasa, Y., Yamasawa, M., Maekawa, H., Abe, S., Kihara, H., Tsunoda, S., Saito, Katsumi, Saito, Kazuyuki, Fudo, T., Obunai, K., Tachibana, H., Oba, I., Kuwahata, T., Higa, S., Gushiken, M., Eto, T., Yoshida, H., Ikeda, D., Fujiura, Yoshitake, Ishizawa, M., Nakatsuka, M., Murata, K., Ogurusu, C., Shimoyama, M., Akutsu, M., Takamura, I., Hoshino, F., Yokota, N., Iwao, T., Tsuchida, K., Takeuchi, M., Hatori, Y., Kitami, Y., Nakamura, Yoichi, Oyama, R., Ageta, M., Oda, Hiroyuki, Go, Y., Mishima, K., Unoki, T., Morii, S., Shiga, Yuhei, Sumi, H., Nagatomo, T., Sanno, K., Fujisawa, K., Atsuchi, Y., Nagoshi, T., Seto, T., Tabuchi, T., Kameko, M., Nii, K., Oshiro, K., Takezawa, H., Nagano, S., Miyamoto, N., Iwaki, M., Nakamura, Yuichiro, Fujii, M., Okawa, M., Abe, Masahiko, Abe, Masatake, Abe, Mitsunori, Saito, T., Mito, T., Nagao, K., Minami, J., Mita, T., Sakuma, I., Taguchi, T., Marusaki, S., Doi, H., Tanaka, M., Fujito, T., Matsuta, M., Kusumoto, T., Kakinoki, S., Ashida, K., Yoshizawa, N., Agata, J., Arasaki, O., Manita, M., Ikemura, M., Fukuoka, S., Murakami, H., Matsukawa, S., Hata, Y., Taniguchi, T., Ko, T., Kubo, H., Imamaki, M., Akiyama, M., Inagaki, M., Odakura, H., Ueda, T., Katsube, Y., Nakata, A., Watanabe, H., Techigawara, M., Igarashi, M., Taga, K., Kimura, T., Tomimoto, S., Shibuya, M., Nakano, M., Ito, K., Seo, T., Hiramitsu, S., Hosokawa, H., Hoshiai, M., Hibino, M., Miyagawa, K., Horie, Hajime, Sugishita, N., Shiga, Yukio, Soma, A., Neya, K., Yoshida, Tetsuro, Yoshida, Tomoki, Mizuguchi, M., Ishiguro, M., Minagawa, T., Wada, M., Mukawa, H., Okuda, F., Nagasaka, S., Abe, Y., Adachi, Sen, Adachi, Susumu, Adachi, T., Akahane, K., Amano, T., Aoki, K., Aoyama, T., Arai, H., Arima, S., Arino, T., Asano, H., Asano, T., Azuma, J., Baba, T., Betsuyaku, T., Chibana, H., Date, H., Doiuchi, J., Emura, Y., Endo, M., Fujii, Y., Fujiki, R., Fujisawa, A., Fujisawa, Y., Fukuda, T., Fukui, T., Furukawa, N., Furukawa, T., Furumoto, W., Goto, T., Hamaoka, M., Hanazono, N., Hasegawa, K., Hatsuno, T., Hayashi, Y., Higuchi, K., Hirasawa, K., Hirayama, H., Hirose, M., Hirota, S., Honda, M., Horie, Hideki, Ido, T., Iiji, O., Ikeda, H., Ikeda, K., Ikeoka, K., Imaizumi, M., Inaba, H., Inoue, T., Iseki, F., Ishihara, A., Ishioka, N., Ito, N., Iwase, T., Kakuda, H., Kamata, J., Kanai, H., Kanda, H., Kaneko, M., Kano, H., Kasai, T., Kato, T., Kato, Y., Kawada, Y., Kawai, K., Kawakami, K., Kawakami, S., Kawamoto, T., Kawano, S., Kim, J., Kira, T., Kitazawa, H., Kitazumi, H., Kito, T., Kobayashi, T., Koeda, T., Kojima, J., Komatsu, H., Komatsu, I., Koshibu, Y., Kotani, T., Kozuka, T., Kumai, Y., Kumazaki, T., Maeda, I., Maeda, K., Maruyama, Y., Matsui, S., Matsushita, K., Matsuura, Y., Mineoi, K., Mitsuhashi, H., Miura, N., Miyaguchi, S., Miyajima, S., Miyamoto, H., Miyashita, A., Miyata, S., Mizuguchi, I., Mizuno, A., Mori, T., Moriai, O., Morishita, K., Murai, O., Nagai, Sho, Nagai, Shunichi, Nagata, E., Nagata, H., Nakagomi, A., Nakahara, S., Nakamura, M., Nakamura, R., Nakanishi, N., Nakayama, T., Nakazato, R., Nanke, T., Nariyama, J., Niijima, Y., Niinuma, H., Nishida, Y., Nishihata, Y., Nishino, K., Nishioka, H., Nishizawa, K., Niwa, I., Nomura, K., Nomura, S., Nozoe, M., Ogawa, T., Ohara, N., Okada, M., Okamoto, K., Okita, H., Okuyama, M., Ono, H., Ono, T., Onuki Pearce, Y., Oriso, S., Ota, A., Otaki, E., Saito, Y., Sakai, H., Sakamoto, N., Sakamoto, Y., Samejima, Y., Sasagawa, Y., Sasaguri, H., Sasaki, A., Sasaki, T., Sato, Kazuki, Sato, Kiyoharu, Sawano, M., Seki, S., Sekine, Y., Seta, Y., Sezaki, K., Shibata, N., Shiina, Y., Shimono, H., Shimoyama, Y., Shindo, T., Shinohara, H., Shinohe, R., Shinozuka, T., Shirai, T., Shiraiwa, T., Shozawa, Y., Suga, T., Sugimoto, C., Suzuki, Kazuo, Suzuki, Keita, Suzuki, Shu, Suzuki, Shunji, Suzuki, Susumu, Suzuki, Y., Tada, M., Taguchi, A., Takagi, T., Takagi, Y., Takahashi, K., Takahashi, S., Takai, H., Takanaka, C., Take, S., Takeda, H., Takei, K., Takenaka, K., Tana, T., Tanabe, G., Taya, K., Teragawa, H., Tohyo, S., Toru, S., Tsuchiya, Y., Tsuji, T., Tsuzaki, K., Uchiyama, H., Ueda, O., Ueyama, Y., Wakaki, N., Wakiyama, T., Washizuka, T., Watanabe, M., Yamada, T., Yamagishi, T., Yamaguchi, H., Yamamoto, Kenichi, Yamamoto, Kentaro, Yamamoto, Kunihiko, Yamamoto, T., Yamaura, M., Yamazoe, M., Yasui, K., Yokoyama, Y., Yoshida, K., Lim, T.W., Ching, C.K., Foo, C.G., Chow, J.H., Chen, D.D., Jaufeerally, F.R., Lee, Y.M., Lim, G., Lim, W.T., Thng, S., Yap, S.Y., Yeo, C., Oh, S., Pak, H.N., Kim, J.-B., Kim, J.H., Jang, S.-W., Kim, D.H., Ryu, D.R., Park, S.W., Kim, D.-K., Choi, D.J., Oh, Y.S., Cho, M.-C., Kim, S.-H., Jeon, H.-K., Shin, D.-G., Park, J.S., Park, H.K., Han, S.-J., Sung, J.H., Cho, J.-G., Nam, G.-B., On, Y.K., Lim, H.E., Kwak, J.J., Cha, T.-J., Hong, T.J., Park, S.H., Yoon, J.H., Kim, N.-H., Kim, K.-S., Jung, B.C., Hwang, G.-S., Kim, C.-J., Kim, D.B., Ahn, J.J., An, H.J., Bae, H., Baek, A.L., Chi, W.J., Choi, E.A., Choi, E.H., Choi, H.K., Choi, H.S., Han, S., Heo, E.S., Her, K.O., Hwang, S.W., Jang, E.M., Jang, H.-S., Jang, S., Jeon, H.-G., Jeon, S.R., Jeon, Y.R., Jeong, H.K., Jung, I.-A., Kim, Hyeon Jeong, Kim, Hyun Ju, Kim, Ji Seon, Kim, Jung Sook, Kim, J.A., Kim, K.T., Kim, M.S., Kim, Sang Hee, Kim, Sang Hyun, Kim, Y.-I., Lee, C.S., Lee, E.H., Lee, G.H., Lee, H.Y., Lee, H.-Y., Lee, K.H., Lee, K.R., Lee, M.S., Lee, M.-Y., Lee, R.W., Lee, S.E., Lee, S.H., Lee, S., Lee, W.Y., Noh, I.K., Park, A.R., Park, B.R., Park, H.N., Park, J.H., Park, M., Park, Y., Seo, S.-Y., Shim, J., Sim, J.H., Sohn, Y.M., Son, W.S., Son, Y.S., Song, H.J., Wi, H.K., Woo, J.J., Ye, S., Yim, K.H., Yoo, K.M., Yoon, E.J., Yun, S.Y., Angchaisuksiri, P., Chawanadelert, S., Mongkolwongroj, P., Kanokphatcharakun, K., Cheewatanakornkul, S., Laksomya, T., Pattanaprichakul, S., Chantrarat, T., Rungaramsin, S., Silaruks, S., Wongcharoen, W., Siriwattana, K., Likittanasombat, K., Katekangplu, P., Boonyapisit, W., Cholsaringkarl, D., Chatlaong, B., Chattranukulchai, P., Santanakorn, Y., Hutayanon, P., Khunrong, P., Bunyapipat, T., Jai-Aue, S., Kaewsuwanna, P., Bamungpong, P., Gunaparn, S., Hongsuppinyo, S., Inphontan, R., Khattaroek, R., Khunkong, K., Kitmapawanont, U., Kongsin, C., Naratreekoon, B., Ninwaranon, S., Phangyota, J., Phrommintikul, A., Phunpinyosak, P., Pongmorakot, K., Poomiphol, S., Pornnimitthum, N., Pumprueg, S., Ratchasikaew, S., Sanit, K., Sawanyawisuth, K., Silaruks, B., Sirichai, R., Sriwichian, A., Suebjaksing, W., Sukklad, P., Suttana, T., Tangsirira, A., Thangpet, O., Tiyanon, W., Vorasettakarnkij, Y., Wisaratapong, T., Wongtheptien, W., Wutthimanop, A., Yawila, S., Oto, A., Altun, A., Ozdogru, I., Ozdemir, K., Yilmaz, O., Aydinlar, A., Yilmaz, M.B., Yeter, E., Ongen, Z., Cayli, M., Pekdemir, H., Ozdemir, M., Sucu, M., Sayin, T., Demir, M., Yorgun, H., Ersanli, M., Okuyan, E., Aras, D., Abdelrahman, H., Aktas, O., Alpay, D., Aras, F., Bireciklioglu, M.F., Budeyri, S., Buyukpapuc, M., Caliskan, S., Esen, M., Felekoglu, M.A., Genc, D., Ikitimur, B., Karaayvaz, E.B., Kılıç Karataş, S., Okutucu, S., Ozcelik, E., Quisi, A., Sag, H., Sahiner, L., Sayin, B.Y., Seker, T., Uzun Alkan, D., Yildirim, E., Yildirim, R., Yilmaz, F., Yuksekdag, V., Luciardi, H.L., Vensentini, N., Ingaramo, A.C., Sambadaro, G.A., Fernandez Caputi, V., Berman, S.G., Dragotto, P., Kleiban, A.J., Centurion, N., Giacomi, G., Ahuad Guerrero, R.A., Conde, D., Zapata, G., Di Paola, L.A., Ramos, J.L., Dran, R.D., Egido, J., Fernandez, A.A., Fosco, M.J., Sassone, S., Sinisi, V.A., Cartasegna, L.R., Berli, M.A., Gomez Vilamajo, O.A., Ferroni, F., Alaguibe, E.D., Alvarez D'Amelio, A., Arabetti, C., Arias, L., Belardi, J.A., Bergesio, L., Berli, F., Berli, M., Borchowiec, S., Buzzetti, C., Cabrini, R., Campisi, V., Cappi, A.L., Carrizo, R., Colombo Berra, F., Costabel, J.P., Costamagna, O.J.A., Damonte, A.A., De Urquiza, I.N., Diez, F., Edén, M.F., Fanuele, M., Fernandez Voena, F., Foa Torres, M., Funosas, C., Giacomi, M.P., Gimenez, C.H., Gurfinkel, E.P., de L.M. 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S., de Kare-Silver, N., Gilliland, A., Strieder, E., Howitt, A., Vishwanathan, B., Bird, N., Gray, D., Clark, M., Bisatt, J., Litchfield, J., Fisher, E., Fooks, T., Kelsall, A.R., Alborough, E., Wakeling, J., Parfitt, M., Milne, K., Rogers, S., Priyadharshan, R., Oliver, J.L., Davies, E., Abushal, S., Jacobs, M., Hutton, C., Walls, N.I., Thompson, R., Chigbo, C., Zaidi, S.M.A., Howard, M., Butter, K.C., Barrow, S., Little, H., Haq, I.U., Gibbons, L., Glencross, S., McLeod, A.J., Poland, K., Mulholland, C., Warke, A., Conn, P., Burns, G., Smith, R.N., Lowe, S., Kamath, R., Dau, H.S., Webster, J., Hodgins, I., Vercoe, S., Roome, P.C., Pinnock, H., Patel, J.R.A., Ali, A., Hart, N., Davies, R., Stuart, E., Neden, C.A., Danielsen, M., Heath, R., Sharma, P., Galloway, S., Hawkins, C., Oliver, R., Aylward, M., Mannion, S., Braddick, M., Edwards, D., Rothwell, A.C., Sabir, A., Choudhary, F., Khalaque, S., Wilson, A., Peters, S., Coulson, W., Roberts, N., Heer, A., Coates, S., Ward, B., 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M., Raynes, S., Rose, J., Sanders, L., Seremetkoska, M., Setio, H., Shone, S., Shrestha, P., Singh, C., Singleton, C., Stoyanov, N., Sutcliffe, S., Swaraj, K., Tarrant, J., Thompson, S., Tsay, I.M., Vorster, M., Waldman, A., Wallis, L., Wilford, E., Wong, K., Connolly, S.J., Spyropoulos, A., Eikelboom, J., Luton, R., Gupta, M., Pandey, A.S., Cheung, S., Leader, R., Beaudry, P., Ayala-Paredes, F., Berlingieri, J., Heath, J., Poirier, G., Du Preez, M., Nadeau, R., Dresser, G., Dhillon, R., Hruczkowski, T., Schweitzer, B., Coutu, B., Angaran, P., MacDonald, P., Vizel, S., Fikry, S., Parkash, R., Lavoie, A., Cha, J., Ramjattan, B., Bonet, J., Ahmad, K., Aro, L., Aves, T., Beaudry, K., Bergeron, C., Bigcanoe, J., Bignell, N., Breakwell, L., Burke, E., Carroll, L., Clarke, B., Cleveland, T., Daheb, S., Dehghani, P., Denis, I., Djaidani, Z., Dorian, P., Douglass, S., Dunnigan, J., Ewert, A., Farquhar, D., Fearon, A., Ferleyko, L., Fournier, D., Fox, B., Grenier, M.-C., Gulliver, W., Haveman, K., Hines, C., Hines, K., Jackson, A.M., Jean, C., Jethoo, G., Kahlon, R., Kelly, S., Kim, R., Korley, V., Kornder, J., Kwan, L., Largy, J., Lewis, C., Lewis, S., Mangat, I., Moor, R., Navratil, J., Neas, I., Otis, J., Otis, R., Pandey, M., Petrie, F., Pinter, A., Raines, M., Roberts, P., Robinson, M., Sas, G., Schulman, S., Snell, L., Spearson, S., Stevenson, J., Trahey, T., Wong, S., Wright, D., Ragy, H., Abd El-Aziz, A., Abou Seif, S.K., El Din, M.G., El Etriby, S., Elbahry, A., El-Etreby, A., Elkhadem, M., Katta, A., Khairy, T., Mowafy, A., Nawar, M., Ohanissian, A., Reda, A., Reda, M., Salem, H., Sami, N., Samir, S., Setiha, M., Sobhy, M., Soliman, A., Taha, N., Tawfik, M., Zaatout, E., Kettles, D., Bayat, J., Siebert, H., Horak, A., Kelfkens, Y., Garda, R., Pillay, T., Guerra, M., van Zyl, L., Theron, H., Murray, A., Louw, R., Greyling, D., Mntla, P., Ueckermann, V., Loghdey, R., Ismail, S., Ahmed, F., Engelbrecht, J., Ramdass, A., Maharajh, S., Oosthuysen, W., Angel, G., Bester, C., Booysen, M., Boshoff, C., Cannon, C., Cassimjee, S., Chami, C., Conway, G., Davids, A., de Meyer, L., Du Plessis, G., Ellis, T., Henley, L., Karsten, M., Loyd, E., Marks, J., Mavhusa, L., Mostert, M., Page, A., Rikhotso, L., Salie, M., Sasto, J., Shaik, F., Skein, A., Smith, L., Tarr, G., Tau, T., van Zyl, F., Al Mahmeed, W., Yousef, G., Agrawal, A., Nathani, M., Ibrahim, M., Esheiba, E.M., Singh, R., Naguib, A., Abu-Mahfouz, M., Al Omairi, M., Al Naeemi, A., Maruthanayagam, R., Bazargani, N., Wassef, A., Gupta, R., Khan, M., Subbaraman, B., Abdul, A., Al Mulla, A., El Bardisy, S., Haridas, P., Jadhav, S., Magdaluyo, K., Makdad, M., Maqsood, I., Mohamed, R., Sharma, N., Sharma, R., Thanzeel, M., Goldhaber, S.Z., Canosa, R., Rama, P., Blumberg, E., Garcia, J., Mullen, P., Wilson, V., Quick, A., Ferrick, K., Kutayli, W.M., Cox, M., Franco, M., Falkowski, S., Mendelson, R., Williams, M., Miller, S., Beach, S., Alfieri, A., Gutowski, T., Haque, I., Reddy, R., Ahmed, W., Delafontaine, P., Diercks, D., Theodoro, D., Remmel, K., Alberts, M., Ison, R., Noveck, H., Duffy, P., Pitta, S., Nishijima, D., Treasure, C., Asafu-Adjaye, N., Ball, K., Bartlett, M., Bentley, M., Bowers, S., Brown, A., Browne, A., Cameron-Watts, J., Canova, M., Cassidy, D., Cervellione, K., Congal, S., DePauw, J., Dickerson, A., Eley, M., Evans, L., Felpel, S., Ferdinand, K., Fielder, D., Gentry, P., Haideri, A., Hakimi, F., Harbour, T., Hartranft, E., Hawkins, B., Headlee, M., Henson, L., Herrick, C., Hicks, T., Jasinski, S., Jones, A., Jones, L., Jones, P., Karl, S., Keeling, M., Kerr, J., Knowles, P., Langdon, J., Lay, M., Lee, J.A., Lincoln, T., Malone, E., Merliss, A., Merritt, D., Minardo, J., Mooso, B., Orosco, C., Palumbo, V., Parker, M., Parrott, T., Paserchia, S., Pearl, G., Peterson, J., Pickelsimer, N., Purcell, T., Raynor, J., Raziano, S., Richard, C., Richardson, T., Robertson, C., Sage, A., Sanghera, T., Shaw, P., Shoemaker, J., Smith, K., Stephanie, B., Thatcher, A., Theobald, H., Thompson, N., Treasure, L., Tripti, T., Verdi, C., Worthy, V., Sawhney, Jitendra PS., Kothiwale, Veerappa A., Bisne, Vikas, Durgaprasad, Rajashekhar, Jadhav, Praveen, Chopda, Manoj, Vanajakshamma, Velam, Meena, Ramdhan, Vijayaraghavan, Govindan, Chawla, Kamaldeep, and Allu, Jagan
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- 2018
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109. Demonstrator Detection System for the Active Target and Time Projection Chamber (ACTAR TPC) project
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Roger, T., Pancin, J., Grinyer, G.F., Mauss, B., Laffoley, A.T., Rosier, P., Alvarez-Pol, H., Babo, M., Blank, B., Caamaño, M., Ceruti, S., Daemen, J., Damoy, S., Duclos, B., Fernández-Domínguez, B., Flavigny, F., Giovinazzo, J., Goigoux, T., Henares, J.L., Konczykowski, P., Marchi, T., Lebertre, G., Lecesne, N., Legeard, L., Maugeais, C., Minier, G., Osmond, B., Pedroza, J.L., Pibernat, J., Poleshchuk, O., Pollacco, E.C., Raabe, R., Raine, B., Renzi, F., Saillant, F., Sénécal, P., Sizun, P., Suzuki, D., Swartz, J.A., Wouters, C., Wittwer, G., and Yang, J.C.
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- 2018
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110. Production cross-sections and momentum distributions of fragments from neutron-deficient 36Ar at 1.05 A.GeV
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Caamano, M., Cortina-Gil, D., Suemmerer, K., Benlliure, J., Casarejos, E., Geissel, H., Muenzenberg, G., and Pereira, J.
- Subjects
Nuclear Experiment - Abstract
We have measured production cross sections and longitudinal momentum distributions of fragments from neutron-deficient 36Ar at 1.05 A.GeV. The production cross-sections show excellent agreement with the predictions of the semiempirical formula EPAX. We have compared these results, involving extremly neutron deficient nuclei, with model calculations to extract informa tion about the response of these models close to the driplines. The longitudinal momentum distributions have also been extracted and are compared with the Goldhaber and Morrissey systematics., Comment: 16 pages, 6 figures
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- 2003
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111. Cross-shell states in 15C: A test for p-sd interactions
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Lois-Fuentes, J., primary, Fernández-Domínguez, B., additional, Pereira-López, X., additional, Delaunay, F., additional, Catford, W.N., additional, Matta, A., additional, Orr, N.A., additional, Duguet, T., additional, Otsuka, T., additional, Somà, V., additional, Sorlin, O., additional, Suzuki, T., additional, Achouri, N.L., additional, Assié, M., additional, Bailey, S., additional, Bastin, B., additional, Blumenfeld, Y., additional, Borcea, R., additional, Caamaño, M., additional, Caceres, L., additional, Clément, E., additional, Corsi, A., additional, Curtis, N., additional, Deshayes, Q., additional, Farget, F., additional, Fisichella, M., additional, de France, G., additional, Franchoo, S., additional, Freer, M., additional, Gibelin, J., additional, Gillibert, A., additional, Grinyer, G.F., additional, Hammache, F., additional, Kamalou, O., additional, Knapton, A., additional, Kokalova, Tz., additional, Lapoux, V., additional, Le Crom, B., additional, Leblond, S., additional, Marqués, F.M., additional, Morfouace, P., additional, Pancin, J., additional, Perrot, L., additional, Piot, J., additional, Pollacco, E., additional, Ramos, D., additional, Regueira-Castro, D., additional, Rodríguez-Tajes, C., additional, Roger, T., additional, Rotaru, F., additional, Sénoville, M., additional, de Séréville, N., additional, Smith, R., additional, Stanoiu, M., additional, Stefan, I., additional, Stodel, C., additional, Suzuki, D., additional, Thomas, J.C., additional, Timofeyuk, N., additional, Vandebrouck, M., additional, Walshe, J., additional, and Wheldon, C., additional
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- 2023
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112. First 80Se(n,γ) cross section measurement with high resolution in the full stellar energy range 1 eV - 100 keV and its astrophysical implications for the s-process
- Author
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Babiano-Suarez V., Balibrea-Correa J., Caballero-Ontanaya L., Domingo-Pardo C., Ladarescu I., Lerendegui-Marco J., Tain J. L., Calviño F., Casanovas A., Tarifeño-Saldivia A., Guerrero C., Aberle O., Alcayne V., Amaducci S., Andrzejewski J., Audouin L., Bacak M., Barbagallo M., Bennett S., Berthoumieux E., Billowes J., Bosnar D., Brown A., Busso M., Caamaño M., Calviani M., Cano-Ott D., Cerutti F., Chiaveri E., Colonna N., Cortés G., CortésGiraldo M. A., Cosentino L., Cristallo S., Damone L. A., Davies P. J., Diakaki M., Dietz M., Dressler R., Ducasse Q., Dupont E., Durán I., Eleme Z., Fernández-Domínguez B., Ferrari A., Finocchiaro P., Furman V., Göbel K., Garg R., Gawlik-Ramięga A., Gilardoni S., Gonçalves I. F., González-Romero E., Gunsing F., Harada H., Heinitz S., Heyse J., Jenkins D. G., Junghans A., Käppeler F., Kadi Y., Kimura A., Knapová I., Kokkoris M., Kopatch Y., Krtička M., Kurtulgil D., Lederer-Woods C., Leeb H., Lonsdale S. J., Macina D., Manna A., Martínez T., Masi A., Massimi C., Mastinu P., Mastromarco M., Maugeri E. A., Mazzone A., Mendoza E., Mengoni A., Michalopoulou V., Milazzo P. M., Mingrone F., Moreno-Soto J., Musumarra A., Negret A., Nolte R., Ogállar F., Oprea A., Patronis N., Pavlik A., Perkowski J., Persanti L., Petrone C., Pirovano E., Porras I., Praena J., Quesada J. M., Ramos-Doval D., Rauscher T., Reifarth R., Rochman D., Romanets Y., Rubbia C., Sabaté-Gilarte M., Saxena A., Schillebeeckx P., Schumann D., Sekhar A., Smith A. G., Sosnin N. V., Sprung P., Stamatopoulos A., Tagliente G., Tassan-Got L., Thomas Th., Torres-Sánchez P., Tsinganis A., Ulrich J., Urlass S., Valenta S., Vannini G., Variale V., Vaz P., Ventura A., Vescovi D., Vlachoudis V., Vlastou R., Wallner A., Woods P. J., Wright T., and Žugec P.
- Subjects
Physics ,QC1-999 - Abstract
Most elements heavier than iron have been generated in the stellar media by means of neutron capture reactions, approximately half are produced by the slow neutron capture or s-process. Radiative neutron capture cross section measurements are of fundamental importance for the study of this mechanism. In this contribution we present a brief summary on the measurement and results for the 80Se(n,γ) cross-section. The experiment was carried out at CERN n_TOF EAR1 via the time of flight (ToF) technique, using four C6D6 scintillation detectors with very fast response. More than a hundred new resonances have been analyzed for the first time with a high accuracy. The MACS obtained at kT = 8 keV is 36% smaller than the recommended value in KADo-NiS. Some of the astrophysical implications of this result are elucidated in this contribution.
- Published
- 2022
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113. Study of Multi-neutron Systems with SAMURAI Spectrometer
- Author
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Yang, Z. H., primary, Marqués, F. M., additional, Achouri, N. L., additional, Ahn, D. S., additional, Aumann, T., additional, Baba, H., additional, Beaumel, D., additional, Böhmer, M., additional, Boretzky, K., additional, Caamaño, M., additional, Chen, S., additional, Chiga, N., additional, Cortés, M. L., additional, Cortina, D., additional, Doornenbal, P., additional, Douma, C. A., additional, Dufter, F., additional, Feng, J., additional, Fernández-Domínguez, B., additional, Elekes, Z., additional, Forsberg, U., additional, Fujino, T., additional, Fukuda, N., additional, Gašparić, I., additional, Ge, Z., additional, Gernhäuser, R., additional, Gheller, J. M., additional, Gibelin, J., additional, Gillibert, A., additional, Godoy, B. M., additional, Halász, Z., additional, Harada, T., additional, Harakeh, M. N., additional, Hirayama, A., additional, Huang, S. W., additional, Inabe, N., additional, Isobe, T., additional, Kahlbow, J., additional, Kalantar-Nayestanaki, N., additional, Kim, D., additional, Kim, S., additional, Knösel, M. A., additional, Kobayashi, T., additional, Kondo, Y., additional, Koseoglou, P., additional, Kubota, Y., additional, Kuti, I., additional, Lehr, C., additional, Li, P. J., additional, Liu, Y., additional, Maeda, Y., additional, Masuoka, S., additional, Matsumoto, M., additional, Mayer, J., additional, Miki, H., additional, Miwa, M., additional, Murray, I., additional, Nakamura, T., additional, Obertelli, A., additional, Orr, N. A., additional, Otsu, H., additional, Panin, V., additional, Park, S., additional, Parlog, M., additional, Paschalis, S., additional, Potlog, M., additional, Reichert, S., additional, Revel, A., additional, Rossi, D., additional, Saito, A., additional, Sasano, M., additional, Sato, H., additional, Scheit, H., additional, Schindler, F., additional, Shimada, T., additional, Shimizu, Y., additional, Shimoura, S., additional, Stefan, I., additional, Storck, S., additional, Stuhl, L., additional, Suzuki, H., additional, Symochko, D., additional, Takeda, H., additional, Takeuchi, S., additional, Tanaka, J., additional, Togano, Y., additional, Tomai, T., additional, Törnqvsit, H. T., additional, Tscheuschner, J., additional, Uesaka, T., additional, Wagner, V., additional, Wimmer, K., additional, Yamada, H., additional, Yang, B., additional, Yang, L., additional, Yasuda, Y., additional, Yoneda, K., additional, Zanetti, L., additional, and Zenihiro, J., additional
- Published
- 2020
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114. Low-lying structure of 15C: Information on the N=8 shell gap.
- Author
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Lois-Fuentes, J., Fernández-Domínguez, B., Pereira-López, X., Delaunay, F., Catford, W.N., Matta, A., Orr, N.A., Duguet, T., Otsuka, T., Somà, V., Sorlin, O., Suzuki, T., Achouri, N.L., Assié, M., Bailey, S., Bastin, B., Blumenfeld, Y., Borcea, R., Caamaño, M., and Caceres, L.
- Subjects
NEUTRONS ,SPECTROMETRY ,TELESCOPES ,ANGULAR momentum (Nuclear physics) ,RESONANCE - Abstract
The low-lying structure of
15 C has been investigated via the neutron-removal d(16 C, t) reaction. The experiment was performed at GANIL using a secondary16 C beam produced by fragmentation in the LISE spectrometer at 17.2 MeV/nucleon with an intensity of 5 × 104 pps and 100% purity. The angle and energy of the light ejectile were detected by three MUST2 telescopes. The missing mass technique was used to reconstruct the excitation energy of15 C. In this spectrum, two bound states were observed (gs and the first excited state) and two unbound resonant states above the neutron separation threshold (Sn = 1.218 MeV). From the differential cross sections, information on the angular momentum of the transferred nucleon and spectroscopic factors were deduced. The excitation energies and the deduced spectroscopic factors of the negative parity states placed above the neutron separation energy are an important measurement of the 2p-1h configurations in15 C. Our results show good agreement with shell-model calculations with the YSOX interaction and show a sensitivity to the N=8 shell gap. [ABSTRACT FROM AUTHOR]- Published
- 2023
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115. Fragmentation-induced fission reactions of 236U in inverse kinematics to investigate the pre-fragment angular momentum parameterizations.
- Author
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Rodríguez-Sánchez, J.L., Feijoo, M., Benlliure, J., Chatillon, A., Taïeb, J., Audouin, L., Alvarez-Pol, H., Ayyad, Y., Bélier, G., Boutoux, G., Caamaño, M., Casarejos, E., Cortina-Gil, D., Farget, F., Fernández-Domínguez, B., Gorbinet, T., Grente, L., Heinz, A., Johansson, H.T., and Jurado, B.
- Subjects
FISSION neutrons ,ANGULAR momentum (Mechanics) ,NUCLEAR energy ,COLLISIONS (Nuclear physics) ,HEAVY nuclei - Abstract
In the last decades, measurements of spallation, fragmentation and Coulex induced fission reactions in inverse kinematics have provided valuable data to accurately investigate the fission dynamics and nuclear structure at large deformations of a large variety of stable and non-stable heavy nuclei. The collected data were used to constrain dynamic and nuclear structure parameters of different de-excitation models, such as ABLA and GEF, but the data can also be used to constrain the parameterizations describing the pre-fragment properties after the nuclear collision, such as the angular momentum gained by the pre-fragment. In this work, the fissioning system yields are compared to calculations assuming different parameterizations for modeling the angular momentum gained by the compound nuclei. Our findings indicate that the parameterizations utilized by abrasion models clearly underestimate the angular momentum, resulting in the underestimation of the production of lighter fissioning systems. [ABSTRACT FROM AUTHOR]
- Published
- 2023
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116. Corrigendum: “Measurement of 73Ge(n,γ) cross sections and implications for stellar nucleosynthesis” [Phys. Lett. B 790 (2019) 458–465]
- Author
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Lederer-Woods, C., primary, Battino, U., additional, Ferreira, P., additional, Gawlik, A., additional, Guerrero, C., additional, Gunsing, F., additional, Heinitz, S., additional, Lerendegui-Marco, J., additional, Mengoni, A., additional, Reifarth, R., additional, Tattersall, A., additional, Valenta, S., additional, Weiss, C., additional, Aberle, O., additional, Andrzejewski, J., additional, Audouin, L., additional, Bécares, V., additional, Bacak, M., additional, Balibrea, J., additional, Barbagallo, M., additional, Barros, S., additional, Bečvář, F., additional, Beinrucker, C., additional, Belloni, F., additional, Berthoumieux, E., additional, Billowes, J., additional, Bosnar, D., additional, Brugger, M., additional, Caamaño, M., additional, Calviño, F., additional, Calviani, M., additional, Cano-Ott, D., additional, Cerutti, F., additional, Chiaveri, E., additional, Colonna, N., additional, Cortés, G., additional, Cortés-Giraldo, M.A., additional, Cosentino, L., additional, Damone, L.A., additional, Deo, K., additional, Diakaki, M., additional, Dietz, M., additional, Domingo-Pardo, C., additional, Dressler, R., additional, Dupont, E., additional, Durán, I., additional, Fernández-Domínguez, B., additional, Ferrari, A., additional, Finocchiaro, P., additional, Frost, R.J.W., additional, Furman, V., additional, Göbel, K., additional, García, A.R., additional, Gheorghe, I., additional, Glodariu, T., additional, Gonçalves, I.F., additional, González-Romero, E., additional, Goverdovski, A., additional, Griesmayer, E., additional, Harada, H., additional, Heftrich, T., additional, Hernández-Prieto, A., additional, Heyse, J., additional, Jenkins, D.G., additional, Jericha, E., additional, Käppeler, F., additional, Kadi, Y., additional, Katabuchi, T., additional, Kavrigin, P., additional, Ketlerov, V., additional, Khryachkov, V., additional, Kimura, A., additional, Kivel, N., additional, Knapova, I., additional, Kokkoris, M., additional, Krtička, M., additional, Leal-Cidoncha, E., additional, Leeb, H., additional, Licata, M., additional, Lo Meo, S., additional, Losito, R., additional, Macina, D., additional, Marganiec, J., additional, Martínez, T., additional, Massimi, C., additional, Mastinu, P., additional, Mastromarco, M., additional, Matteucci, F., additional, Mendoza, E., additional, Milazzo, P.M., additional, Mingrone, F., additional, Mirea, M., additional, Montesano, S., additional, Musumarra, A., additional, Nolte, R., additional, Palomo-Pinto, F.R., additional, Paradela, C., additional, Patronis, N., additional, Pavlik, A., additional, Perkowski, J., additional, Porras, J.I., additional, Praena, J., additional, Quesada, J.M., additional, Rauscher, T., additional, Riego-Perez, A., additional, Robles, M., additional, Rubbia, C., additional, Ryan, J.A., additional, Sabaté-Gilarte, M., additional, Saxena, A., additional, Schillebeeckx, P., additional, Schmidt, S., additional, Schumann, D., additional, Sedyshev, P., additional, Smith, A.G., additional, Stamatopoulos, A., additional, Suryanarayana, S.V., additional, Tagliente, G., additional, Tain, J.L., additional, Tarifeño-Saldivia, A., additional, Tassan-Got, L., additional, Tsinganis, A., additional, Vannini, G., additional, Variale, V., additional, Vaz, P., additional, Ventura, A., additional, Vlachoudis, V., additional, Vlastou, R., additional, Wallner, A., additional, Warren, S., additional, Weigand, M., additional, Wright, T., additional, and Žugec, P., additional
- Published
- 2023
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- View/download PDF
117. Corrigendum: 'Measurement of Ge( , ) cross sections and implications for stellar nucleosynthesis' [Phys. Lett. B 790 (2019) 458–465]
- Author
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Lederer-Woods, C., Battino, U., Ferreira, P., Gawlik, A., Guerrero, C., Gunsing, F., Heinitz, S., Lerendegui-Marco, J., Mengoni, A., Reifarth, R., Tattersall, A., Valenta, S., Weiss, C., Aberle, O., Andrzejewski, J., Audouin, L., Bécares, V., Bacak, M., Balibrea, J., Barbagallo, M., Barros, S., Bečvář, F., Beinrucker, C., Belloni, F., Berthoumieux, E., Billowes, J., Bosnar, D., Brugger, M., Caamaño, M., Calviño, F., Calviani, M., Cano-Ott, D., Cerutti, F., Chiaveri, E., Colonna, N., Cortés, G., Cortés-Giraldo, M.A., Cosentino, L., Damone, L.A., Deo, K., Diakaki, M., Dietz, M., Domingo-Pardo, C., Dressler, R., Dupont, E., Durán, I., Fernández-Domínguez, B., Ferrari, A., Finocchiaro, P., Frost, R.J.W., Furman, V., Göbel, K., García, A.R., Gheorghe, I., Glodariu, T., Gonçalves, I.F., González-Romero, E., Goverdovski, A., Griesmayer, E., Harada, H., Heftrich, T., Hernández-Prieto, A., Heyse, J., Jenkins, D.G., Jericha, E., Käppeler, F., Kadi, Y., Katabuchi, T., Kavrigin, P., Ketlerov, V., Khryachkov, V., Kimura, A., Kivel, N., Knapova, I., Kokkoris, M., Krtička, M., Leal-Cidoncha, E., Leeb, H., Licata, M., Lo Meo, S., Losito, R., Macina, D., Marganiec, J., Martínez, T., Massimi, C., Mastinu, P., Mastromarco, M., Matteucci, F., Mendoza, E., Milazzo, P.M., Mingrone, F., Mirea, M., Montesano, S., Musumarra, A., Nolte, R., Palomo-Pinto, F.R., Paradela, C., Patronis, N., Pavlik, A., Perkowski, J., Porras, J.I., Praena, J., Quesada, J.M., Rauscher, T., Riego-Perez, A., Robles, M., Rubbia, C., Ryan, J.A., Sabaté-Gilarte, M., Saxena, A., Schillebeeckx, P., Schmidt, S., Schumann, D., Sedyshev, P., Smith, A.G., Stamatopoulos, A., Suryanarayana, S.V., Tagliente, G., Tain, J.L., Tarifeño-Saldivia, A., Tassan-Got, L., Tsinganis, A., Vannini, G., Variale, V., Vaz, P., Ventura, A., Vlachoudis, V., Vlastou, R., Wallner, A., Warren, S., Weigand, M., Wright, T., and Žugec, P.
- Published
- 2023
118. Experimental investigation of ground-state properties of H with transfer reactions
- Author
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Caamaño, M., Roger, T., Moro, A.M., Grinyer, G.F., Pancin, J., Bagchi, S., Sambi, S., Gibelin, J., Fernández–Domínguez, B., Itagaki, N., Benlliure, J., Cortina–Gil, D., Farget, F., Jacquot, B., Pérez–Loureiro, D., Pietras, B., Raabe, R., Ramos, D., Rodríguez Tajes, C., Savajols, H., and Vandebrouck, M.
- Abstract
The properties of nuclei with extreme neutron–to–proton ratios, far from those naturally occurring on Earth, are key to understand nuclear forces and how nucleons hold together to form nuclei. $^{7}$H, with six neutrons and a single proton, is the nuclear system with the most unbalanced neutron–to–proton ratio known so far. However, its sheer existence and properties are still a challenge for experimental efforts and theoretical models. Here we report experimental evidences on the formation of $^{7}$H as a resonance, detected with independent observables, and the first measurement of the structure of its ground state. The resonance is found at ∼0.7 MeV above the $^{3}$H+4n mass, with a narrow width of ∼0.2 MeV and a 1/2+ spin and parity. These data are consistent with a $^{7}$H as a $^{3}$H core surrounded by an extended four-neutron halo, with a unique four-neutron decay and a relatively long half-life thanks to neutron pairing; a prime example of new phenomena occurring in what would be the most pure-neutron nuclear matter we can access in the laboratory.
- Published
- 2023
119. Neutron-proton pairing in the N=Z radioactive -shell Nuclei Ni and Fe probed by pair transfer
- Author
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Le Crom, B., Assié, M., Blumenfeld, Y., Guillot, J., Sagawa, H., Suzuki, T., Honma, M., Achouri, N.L., Bastin, B., Borcea, R., Catford, W.N., Clément, E., Cáceres, L., Caamaño, M., Corsi, A., De France, G., Delaunay, F., De Séréville, N., Fernandez-Dominguez, B., Fisichella, M., Franchoo, S., Georgiadou, A., Gibelin, J., Gillibert, A., Hammache, F., Kamalou, O., Knapton, A., Lapoux, V., Leblond, S., Macchiavelli, A.O., Marqués, F.M., Matta, A., Ménager, L., Morfouace, P., Orr, N.A., Pancin, J., Pereira-Lopez, X., Perrot, L., Piot, J., Pollacco, E., Ramos, D., Roger, T., Rotaru, F., Sánchez-Benítez, A.M., Sénoville, M., Sorlin, O., Stanoiu, M., Stefan, I., Stodel, C., Suzuki, D., Thomas, J.C., and Vandebrouck, M.
- Abstract
The isovector and isoscalar components of neutron-proton pairing are investigated in the N=Z unstable nuclei of the fp-shell through the two-nucleon transfer reaction (p,$^{3}$He) in inverse kinematics. The combination of particle and gamma-ray detection with radioactive beams of $^{56}$Ni and $^{52}$Fe, produced by fragmentation at the GANIL/LISE facility, made it possible to carry out this study for the first time in a closed and an open-shell nucleus in the fp-shell. The transfer cross-sections for ground-state to ground-state (J=0$^{+}$, T=1) and to the first (J=1$^{+}$, T=0) state were extracted for both cases together with the transfer cross-section ratios σ(0+,T=1)/σ(1+,T=0). They are compared with second-order distorted-wave born approximation (DWBA) calculations. The enhancement of the ground-state to ground-state pair transfer cross-section close to mid-shell, in $^{52}$Fe, points towards a superfluid phase in the isovector channel. For the “deuteron-like” transfer, very low cross-sections to the first (J=1$^{+}$, T=0) state were observed both for $^{56}$Ni(p,$^{3}$He) and $^{52}$Fe(p,$^{3}$He) and are related to a strong hindrance of this channel due to spin-orbit effect. No evidence for an isoscalar deuteron-like condensate is observed.
- Published
- 2023
120. Measurement of the $$^{244}$$ 244 Cm and $$^{246}$$ 246 Cm Neutron-Induced Cross Sections at the n_TOF Facility
- Author
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Alcayne, V., primary, Kimura, A., additional, Mendoza, E., additional, Cano-Ott, D., additional, Aberle, O., additional, Amaducci, S., additional, Andrzejewski, J., additional, Audouin, L., additional, Babiano-Suarez, V., additional, Bacak, M., additional, Barbagallo, M., additional, Bécares, V., additional, Bečvář, F., additional, Bellia, G., additional, Berthoumieux, E., additional, Billowes, J., additional, Bosnar, D., additional, Brown, A. S., additional, Busso, M., additional, Caamaño, M., additional, Caballero, L., additional, Calviani, M., additional, Calviño, F., additional, Casanovas, A., additional, Cerutti, F., additional, Chen, Y. H., additional, Chiaveri, E., additional, Colonna, N., additional, Cortés, G. P., additional, Cortés-Giraldo, M. A., additional, Cosentino, L., additional, Cristallo, S., additional, Damone, L. A., additional, Diakaki, M., additional, Dietz, M., additional, Domingo-Pardo, C., additional, Dressler, R., additional, Dupont, E., additional, Durán, I., additional, Eleme, Z., additional, Fernández-Domíngez, B., additional, Ferrari, A., additional, Ferro-Gon calves, I., additional, Finocchiaro, P., additional, Furman, V., additional, Gawlik, A., additional, Gilardoni, S., additional, Glodariu, T., additional, Göbel, K., additional, González-Romero, E., additional, Guerrero, C., additional, Gunsing, F., additional, Heinitz, S., additional, Heyse, J., additional, Jenkins, D. G., additional, Kadi, Y., additional, Käppeler, F., additional, Kivel, N., additional, Kokkoris, M., additional, Kopatch, Y., additional, Krtička, M., additional, Kurtulgil, D., additional, Ladarescu, I., additional, Lederer-Woods, C., additional, Lerendegui-Marco, J., additional, Meo, S. Lo, additional, Lonsdale, S.-J., additional, Macina, D., additional, Manna, A., additional, Martínez, T., additional, Masi, A., additional, Massimi, C., additional, Mastinu, P. F., additional, Mastromarco, M., additional, Matteucci, F., additional, Maugeri, E., additional, Mazzone, A., additional, Mengoni, A., additional, Michalopoulou, V., additional, Milazzo, P. M., additional, Mingrone, F., additional, Musumarra, A., additional, Negret, A., additional, Nolte, R., additional, Ogállar, F., additional, Oprea, A., additional, Patronis, N., additional, Pavlik, A., additional, Perkowski, J., additional, Piersanti, L., additional, Porras, I., additional, Praena, J., additional, Quesada, J. M., additional, Radeck, D., additional, Doval, D. Ramos, additional, Rausher, T., additional, Reifarth, R., additional, Rochman, D., additional, Rubbia, C., additional, Sabaté-Gilarte, M., additional, Saxena, A., additional, Schillebeeckx, P., additional, Schumann, D., additional, Smith, A. G., additional, Sosnin, N., additional, Stamatopoulos, A., additional, Tagliente, G., additional, Tain, J. L., additional, Talip, Z., additional, Tarifeño-Saldivia, A. E., additional, Tassan-Got, L., additional, Tsinganis, A., additional, Ulrich, J., additional, Urlass, S., additional, Valenta, S., additional, Vannini, G., additional, Variale, V., additional, Vaz, P., additional, Ventura, A., additional, Vlachoudis, V., additional, Vlastou, R., additional, Wallner, A., additional, Woods, P. J., additional, Wright, T. J., additional, and Žugec, P., additional
- Published
- 2019
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121. Experimental evidence of the effect of nuclear shells on fission dissipation and time
- Author
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Ramos, D., primary, Caamaño, M., additional, Farget, F., additional, Rodríguez-Tajes, C., additional, Lemasson, A., additional, Schmitt, C., additional, Audouin, L., additional, Benlliure, J., additional, Casarejos, E., additional, Clement, E., additional, Cortina, D., additional, Delaune, O., additional, Derkx, X., additional, Dijon, A., additional, Doré, D., additional, Fernández-Domínguez, B., additional, de France, G., additional, Heinz, A., additional, Jacquot, B., additional, Paradela, C., additional, Rejmund, M., additional, Roger, T., additional, and Salsac, M.-D., additional
- Published
- 2023
- Full Text
- View/download PDF
122. The new vertical neutron beam line at the CERN n_TOF facility design and outlook on the performance
- Author
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Weiß, C., Chiaveri, E., Girod, S., Vlachoudis, V., Aberle, O., Barros, S., Bergström, I., Berthoumieux, E., Calviani, M., Guerrero, C., Sabaté-Gilarte, M., Tsinganis, A., Andrzejewski, J., Audouin, L., Bacak, M., Balibrea-Correa, J., Barbagallo, M., Bécares, V., Beinrucker, C., Belloni, F., Bečvář, F., Billowes, J., Bosnar, D., Brugger, M., Caamaño, M., Calviño, F., Cano-Ott, D., Cerutti, F., Colonna, N., Cortés, G., Cortés-Giraldo, M.A., Cosentino, L., Damone, L., Deo, K., Diakaki, M., Domingo-Pardo, C., Dupont, E., Durán, I., Dressler, R., Fernández-Domínguez, B., Ferrari, A., Ferreira, P., Finocchiaro, P., Frost, R., Furman, V., Ganesan, S., Gheorghe, A., Glodariu, T., Göbel, K., Gonçalves, I.F., González-Romero, E., Goverdovski, A., Griesmayer, E., Gunsing, F., Harada, H., Heftrich, T., Heinitz, S., Hernández-Prieto, A., Heyse, J., Jenkins, D.G., Jericha, E., Kadi, Y., Käppeler, F., Katabuchi, T., Kavrigin, P., Ketlerov, V., Khryachkov, V., Kimura, A., Kivel, N., Kokkoris, M., Krtička, M., Leal-Cidoncha, E., Lederer, C., Leeb, H., Lerendegui, J., Licata, M., Lo Meo, S., López, D., Losito, R., Macina, D., Marganiec, J., Martínez, T., Massimi, C., Mastinu, P.F., Mastromarco, M., Matteucci, F., Mendoza, E., Mengoni, A., Milazzo, P.M., Mingrone, F., Mirea, M., Montesano, S., Musumarra, A., Nolte, R., Palomo Pinto, R., Paradela, C., Patronis, N., Pavlik, A., Perkowski, J., Porras, I., Praena, J., Quesada, J.M., Rauscher, T., Reifarth, R., Riego-Perez, A., Robles, M.S., Rubbia, C., Ryan, J., Saxena, A., Schillebeeckx, P., Schmidt, S., Schumann, D., Sedyshev, P., Smith, G., Stamatopoulos, A., Steinegger, P., Suryanarayana, S.V., Tagliente, G., Tain, J.L., Tarifeño-Saldivia, A., Tassan-Got, L., Valenta, S., Vannini, G., Variale, V., Vaz, P., Ventura, A., Vlastou, R., Wallner, A., Warren, S., Weigand, M., Wright, T., and Žugec, P.
- Published
- 2015
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- View/download PDF
123. Access to Scission Observables from Fission Fragment Velocities
- Author
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Caamaño, M. and Farget, F.
- Published
- 2015
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124. A Sample of the Results of the First SOFIA Experiment
- Author
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Gorbinet, T., Bélier, G., Boutoux, G., Chatillon, A., Ebran, A., Laurent, B., Martin, J.-F., Pellereau, E., Taieb, J., Audouin, L., Tassan-Got, L., Jurado, B., Álvarez-Pol, H., Ayyad, Y., Benlliure, J., Caamaño, M., Cortina-Gil, D., Fernández-Domínguez, B., Paradela, C., Rodríguez-Sánchez, J.-L., Vargas, J., Casarejos, E., Heinz, A., Kelić-Heil, A., Kurz, N., Nociforo, C., Pietri, S., Prochazka, A., Rossi, D., Schmidt, K.-H., Simon, H., Voss, B., Weick, H., and Winfield, J.S.
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- 2015
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125. Measurement of the <math><mrow><mmultiscripts><mi>Se</mi><mprescripts/><none/><mn>77</mn></mmultiscripts><mo>(</mo><mi>n</mi><mo>,</mo><mi>γ</mi><mo>)</mo></mrow></math> cross section up to 200 keV at the n_TOF facility at CERN
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Sosnin, N V, Lederer-Woods, C, Krtička, M, Garg, R, Dietz, M, Bacak, M, Barbagallo, M, Battino, U, Cristallo, S, Damone, L A, Diakaki, M, Heinitz, S, Macina, D, Mastromarco, M, Mingrone, F, St J Murphy, A, Tagliente, G, Valenta, S, Vescovi, D, Aberle, O, Alcayne, V, Amaducci, S, Andrzejewski, J, Audouin, L, Bécares, V, Babiano-Suarez, V, Bečvář, F, Bellia, G, Berthoumieux, E, Billowes, J, Bosnar, D, Brown, A, Busso, M, Caamaño, M, Caballero, L, Calviño, F, Calviani, M, Cano-Ott, D, Casanovas, A, Cerutti, F, Chen, Y H, Chiaveri, E, Colonna, N, Cortés, G, Cortés-Giraldo, M A, Cosentino, L, Domingo-Pardo, C, Dressler, R, Dupont, E, Durán, I, Eleme, Z, Fernández-Domínguez, B, Ferrari, A, Finocchiaro, P, Göbel, K, Gawlik-Ramięga, A, Gilardoni, S, Glodariu, T, Gonçalves, I F, González-Romero, E, Guerrero, C, Gunsing, F, Harada, H, Heyse, J, Jenkins, D G, Jericha, E, Käppeler, F, Kadi, Y, Kimura, A, Kivel, N, Kokkoris, M, Kurtulgil, D, Ladarescu, I, Leeb, H, Lerendegui-Marco, J, Meo, S Lo, Lonsdale, S J, Manna, A, Martínez, T, Masi, A, Massimi, C, Mastinu, P, Matteucci, F, Maugeri, E A, Mazzone, A, Mendoza, E, Mengoni, A, Michalopoulou, V, Milazzo, P M, Musumarra, A, Negret, A, Nolte, R, Ogállar, F, Oprea, A, Patronis, N, Pavlik, A, Perkowski, J, Piersanti, L, Porras, I, Praena, J, Quesada, J M, Radeck, D, Ramos-Doval, D, Rauscher, T, Reifarth, R, Rochman, D, Rubbia, C, Sabaté-Gilarte, M, Saxena, A, Schillebeeckx, P, Schumann, D, Smith, A G, Stamatopoulos, A, Tain, J L, Talip, T, Tarifeño-Saldivia, A, Tassan-Got, L, Torres-Sánchez, P, Tsinganis, A, Ulrich, J, Urlass, S, Vannini, G, Variale, V, Vaz, P, Ventura, A, Vlachoudis, V, Vlastou, R, Wallner, A, Woods, P J, Wright, T, Žugec, P, Institut de Recherches sur les lois Fondamentales de l'Univers (IRFU), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay, Institut de Physique Nucléaire d'Orsay (IPNO), 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), and n_TOF
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Nuclear Physics - Experiment ,[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex] - Abstract
International audience; The Se77(n,γ) reaction is of importance for Se77 abundance during the slow neutron capture process in massive stars. We have performed a new measurement of the Se77 radiative neutron capture cross section at the Neutron Time-of-Flight facility at CERN. Resonance capture kernels were derived up to 51 keV and cross sections up to 200 keV. Maxwellian-averaged cross sections were calculated for stellar temperatures between kT=5keV and kT=100keV, with uncertainties between 4.2% and 5.7%. Our results lead to substantial decreases of 14% and 19% in Se77 abundances produced through the slow neutron capture process in selected stellar models of 15M⊙ and 2M⊙, respectively, compared to using previous recommendation of the cross section.
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- 2023
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126. Neutron-induced fission cross sections of Th232 and U233 up to 1 GeV using parallel plate avalanche counters at the CERN n_TOF facility
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Tarrío, D, Tassan-Got, L, Duran, I, Leong, L S, Paradela, C, Audouin, L, Leal-Cidoncha, E, Le Naour, C, Caamaño, M, Ventura, A, Altstadt, S, Andrzejewski, J, Barbagallo, M, Bécares, V, Becvár, F, Belloni, F, Berthoumieux, E, Billowes, J, Boccone, V, Bosnar, D, Brugger, M, Calviani, M, Calviño, F, Cano-Ott, D, Carrapiço, C, Cerutti, F, Chiaveri, E, Chin, M, Colonna, N, Cortés, G, Cortés-Giraldo, M A, Diakaki, M, Domingo-Pardo, C, Dzysiuk, N, Eleftheriadis, C, Ferrari, A, Fraval, K, Ganesan, S, García, A R, Giubrone, G, Gómez-Hornillos, M B, Gonçalves, I F, González-Romero, E, Griesmayer, E, Guerrero, C, Gunsing, F, Gurusamy, P, Jenkins, D G, Jericha, E, Kadi, Y, Käppeler, F, Karadimos, D, Koehler, P, Kokkoris, M, Krticka, M, Kroll, J, Langer, C, Lederer, C, Leeb, H, Losito, R, Manousos, A, Marganiec, J, Martínez, T, Massimi, C, Mastinu, P F, Mastromarco, M, Meaze, M, Mendoza, E, Mengoni, A, Milazzo, P M, Mingrone, F, Mirea, M, Mondalaers, W, Pavlik, A, Perkowski, J, Plompen, A, Praena, J, Quesada, J M, Rauscher, T, Reifarth, R, Riego, A, Robles, M S, Roman, F, Rubbia, C, Sarmento, R, Schillebeeckx, P, Schmidt, S, Tagliente, G, Tain, J L, Tsinganis, A, Valenta, S, Vannini, G, Variale, V, Vaz, P, Versaci, R, Vermeulen, M J, Vlachoudis, V, Vlastou, R, Wallner, A, Ware, T, Weigand, M, Weiß, C, Wright, T J, and Žugec, P
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Nuclear Physics - Experiment - Abstract
The neutron-induced fission cross sections of Th232 and U233 were measured relative to U235 in a wide neutron energy range up to 1 GeV (and from fission threshold in the case of Th232, and from 0.7 eV in case of U233), using the white-spectrum neutron source at the CERN Neutron Time-of-Flight (n_TOF) facility. Parallel plate avalanche counters (PPACs) were used, installed at the Experimental Area 1 (EAR1), which is located at 185 m from the neutron spallation target. The anisotropic emission of fission fragments were taken into account in the detection efficiency by using, in the case of U233, previous results available in EXFOR, whereas in the case of Th232 these data were obtained from our measurement, using PPACs and targets tilted 45∘ with respect to the neutron beam direction. Finally, the obtained results are compared with past measurements and major evaluated nuclear data libraries. Calculations using the high-energy reaction models INCL++ and ABLA07 were performed and some of their parameters were modified to reproduce the experimental results. At high energies, where no other neutron data exist, our results are compared with experimental data on proton-induced fission. Moreover, the dependence of the fission cross section at 1 GeV with the fissility parameter of the target nucleus is studied by combining those (p,f) data with our (n,f) data on Th232 and U233 and on other isotopes studied earlier at n_TOF using the same experimental setup.
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- 2023
127. Neutron-induced fission cross sections of Th 232 and U 233 up to 1 GeV using parallel plate avalanche counters at the CERN n_TOF facility
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N_TOF Collaboration, Tarrío, D., Tassan-Got, L., Duran, I., Leong, L. S., Paradela, C., Audouin, L., Leal-Cidoncha, E., Le Naour, C., Caamaño, M., Ventura, A., Altstadt, S., Andrzejewski, J., Barbagallo, M., Bécares, V., Bečvář, F., Belloni, F., Berthoumieux, E., Billowes, J., Boccone, V., Bosnar, D., Brugger, M., Calviani, M., Calviño, F., Cano-Ott, D., Carrapiço, C., Cerutti, F., Chiaveri, E., Chin, M., Colonna, N., Cortés, G., Cortés-Giraldo, M. A., Diakaki, M., Domingo-Pardo, C., Dzysiuk, N., Eleftheriadis, C., Ferrari, A., Fraval, K., Ganesan, S., García, A. R., Giubrone, G., Gómez-Hornillos, M. B., Gonçalves, I. F., González-Romero, E., Griesmayer, E., Guerrero, C., Gunsing, F., Gurusamy, P., Jenkins, D. G., Jericha, E., Kadi, Y., Käppeler, F., Karadimos, D., Koehler, P., Kokkoris, M., Krtička, M., Kroll, J., Langer, C., Lederer, C., Leeb, H., Losito, R., Manousos, A., Marganiec, J., Martínez, T., Massimi, C., Mastinu, P. F., Mastromarco, M., Meaze, M., Mendoza, E., Mengoni, A., Milazzo, P. M., Mingrone, F., Mirea, M., Mondalaers, W., Pavlik, A., Perkowski, J., Plompen, A., Praena, J., Quesada, J. M., Rauscher, T., Reifarth, R., Riego, A., Robles, M. S., Roman, F., Rubbia, C., Sarmento, R., Schillebeeckx, P., Schmidt, S., Tagliente, G., Tain, J. L., Tsinganis, A., Valenta, S., Vannini, G., Variale, V., Vaz, P., Versaci, R., Vermeulen, M. J., Vlachoudis, V., Vlastou, R., Wallner, A., Ware, T., Weigand, M., Weiß, C., Wright, T. J., and Žugec, P.
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ddc:000 ,Computer science, information & general works - Abstract
The neutron-induced fission cross sections of $^{232}$Th and $^{233}$U were measured relative to $^{235}$U in a wide neutron energy range up to 1 GeV (and from fission threshold in the case of $^{232}$Th, and from 0.7 eV in case of $^{233}$U), using the white-spectrum neutron source at the CERN Neutron Time-of-Flight (n_TOF) facility. Parallel plate avalanche counters (PPACs) were used, installed at the Experimental Area 1 (EAR1), which is located at 185 m from the neutron spallation target. The anisotropic emission of fission fragments were taken into account in the detection efficiency by using, in the case of $^{233}$U, previous results available in EXFOR, whereas in the case of $^{232}$Th these data were obtained from our measurement, using PPACs and targets tilted 45∘ with respect to the neutron beam direction. Finally, the obtained results are compared with past measurements and major evaluated nuclear data libraries. Calculations using the high-energy reaction models INCL++ and ABLA07 were performed and some of their parameters were modified to reproduce the experimental results. At high energies, where no other neutron data exist, our results are compared with experimental data on proton-induced fission. Moreover, the dependence of the fission cross section at 1 GeV with the fissility parameter of the target nucleus is studied by combining those (p,f) data with our (n,f) data on $^{232}$Th and $^{233}$U and on other isotopes studied earlier at n_TOF using the same experimental setup.
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- 2023
128. Neutron-induced fission cross sections of <math><mmultiscripts><mi>Th</mi><mprescripts/><none/><mn>232</mn></mmultiscripts></math> and <math><mmultiscripts><mi mathvariant='normal'>U</mi><mprescripts/><none/><mn>233</mn></mmultiscripts></math> up to 1 GeV using parallel plate avalanche counters at the CERN n_TOF facility
- Author
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Tarrío, D, Tassan-Got, L, Duran, I, Leong, L.S, Paradela, C, Audouin, L, Leal-Cidoncha, E, Le Naour, C, Caamaño, M, Ventura, A, Altstadt, S, Andrzejewski, J, Barbagallo, M, Bécares, V, Becvár, F, Belloni, F, Berthoumieux, E, Billowes, J, Boccone, V, Bosnar, D, Brugger, M, Calviani, M, Calviño, F, Cano-Ott, D, Carrapiço, C, Cerutti, F, Chiaveri, E, Chin, M, Colonna, N, Cortés, G, Cortés-Giraldo, M.A, Diakaki, M, Domingo-Pardo, C, Dzysiuk, N, Eleftheriadis, C, Ferrari, A, Fraval, K, Ganesan, S, García, A.R, Giubrone, G, Gómez-Hornillos, M.B, Gonçalves, I.F, González-Romero, E, Griesmayer, E, Guerrero, C, Gunsing, F, Gurusamy, P, Jenkins, D.G, Jericha, E, Kadi, Y, Käppeler, F, Karadimos, D, Koehler, P, Kokkoris, M, Krticka, M, Kroll, J, Langer, C, Lederer, C, Leeb, H, Losito, R, Manousos, A, Marganiec, J, Martínez, T, Massimi, C, Mastinu, P.F, Mastromarco, M, Meaze, M, Mendoza, E, Mengoni, A, Milazzo, P.M, Mingrone, F, Mirea, M, Mondalaers, W, Pavlik, A, Perkowski, J, Plompen, A, Praena, J, Quesada, J.M, Rauscher, T, Reifarth, R, Riego, A, Robles, M.S, Roman, F, Rubbia, C, Sarmento, R, Schillebeeckx, P, Schmidt, S, Tagliente, G, Tain, J.L, Tsinganis, A, Valenta, S, Vannini, G, Variale, V, Vaz, P, Versaci, R, Vermeulen, M.J, Vlachoudis, V, Vlastou, R, Wallner, A, Ware, T, Weigand, M, Weiß, C, Wright, T.J, Žugec, P, Laboratoire de Physique des 2 Infinis Irène Joliot-Curie (IJCLab), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris-Saclay-Centre National de la Recherche Scientifique (CNRS), Institut de Recherches sur les lois Fondamentales de l'Univers (IRFU), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay, and n_TOF
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[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex] - Abstract
International audience; The neutron-induced fission cross sections of Th232 and U233 were measured relative to U235 in a wide neutron energy range up to 1 GeV (and from fission threshold in the case of Th232, and from 0.7 eV in case of U233), using the white-spectrum neutron source at the CERN Neutron Time-of-Flight (n_TOF) facility. Parallel plate avalanche counters (PPACs) were used, installed at the Experimental Area 1 (EAR1), which is located at 185 m from the neutron spallation target. The anisotropic emission of fission fragments were taken into account in the detection efficiency by using, in the case of U233, previous results available in EXFOR, whereas in the case of Th232 these data were obtained from our measurement, using PPACs and targets tilted 45∘ with respect to the neutron beam direction. Finally, the obtained results are compared with past measurements and major evaluated nuclear data libraries. Calculations using the high-energy reaction models INCL++ and ABLA07 were performed and some of their parameters were modified to reproduce the experimental results. At high energies, where no other neutron data exist, our results are compared with experimental data on proton-induced fission. Moreover, the dependence of the fission cross section at 1 GeV with the fissility parameter of the target nucleus is studied by combining those (p,f) data with our (n,f) data on Th232 and U233 and on other isotopes studied earlier at n_TOF using the same experimental setup.
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- 2023
- Full Text
- View/download PDF
129. Corrigendum: 'Measurement of ⁷³Ge(n,γ) cross sections and implications for stellar nucleosynthesis' [Phys. Lett. B 790 (2019) 458–465]
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Lederer-Woods, C., Battino, U., Ferreira, P., Gawlik, A., Guerrero, C., Gunsing, F., Heinitz, S., Lerendegui-Marco, J., Mengoni, A., Reifarth, R., Tattersall, A., Valenta, S., Weiss, C., Aberle, O., Andrzejewski, J., Audouin, L., Bécares, V., Bacak, M., Balibrea, J., Barbagallo, M., Barros, S., Bečvář, F., Beinrucker, C., Belloni, F., Berthoumieux, E., Billowes, J., Bosnar, D., Brugger, M., Caamaño, M., Calviño, F., Calviani, M., Cano-Ott, D., Cerutti, F., Chiaveri, E., Colonna, N., Cortés, G., Cortés-Giraldo, M. A., Cosentino, L., Damone, L. A., Deo, K., Diakaki, M., Dietz, M., Domingo-Pardo, C., Dressler, R., Dupont, E., Durán, I., Fernández-Domínguez, B., Ferrari, A., Finocchiaro, P., Frost, R. J. W., Furman, V., Göbel, K., García, A. R., Gheorghe, I., Glodariu, T., Gonçalves, I. F., González-Romero, E., Goverdovski, A., Griesmayer, E., Harada, H., Heftrich, T., Hernández-Prieto, A., Heyse, J., Jenkins, D. G., Jericha, E., Käppeler, F., Kadi, Y., Katabuchi, T., Kavrigin, P., Ketlerov, V., Khryachkov, V., Kimura, A., Kivel, N., Knapova, I., Kokkoris, M., Krtička, M., Leal-Cidoncha, E., Leeb, H., Licata, M., Lo Meo, S., Losito, R., Macina, D., Marganiec, J., Martínez, T., Massimi, C., Mastinu, P., Mastromarco, M., Matteucci, F., Mendoza, E., Milazzo, P. M., Mingrone, F., Mirea, M., Montesano, S., Musumarra, A., Nolte, R., Palomo-Pinto, F. R., Paradela, C., Patronis, N., Pavlik, A., Perkowski, J., Porras, J. I., Praena, J., Quesada, J. M., Rauscher, T., Riego-Perez, A., Robles, M., Rubbia, C., Ryan, J. A., Sabaté-Gilarte, M., Saxena, A., Schillebeeckx, P., Schmidt, S., Schumann, D., Sedyshev, P., Smith, A. G., Stamatopoulos, A., Suryanarayana, S. V., Tagliente, G., Tain, J. L., Tarifeño-Saldivia, A., Tassan-Got, L., Tsinganis, A., Vannini, G., Variale, V., Vaz, P., Ventura, A., Vlachoudis, V., Vlastou, R., Wallner, A., Warren, S., Weigand, M., Wright, T., and Žugec, P.
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Physics ,ddc:530 - Published
- 2023
- Full Text
- View/download PDF
130. Characterization of a detector setup for the measurement of the 235U(n,f) cross section relative to n-p scattering up to 500 MeV at the n_TOF facility at CERN
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Manna, A., primary, Pirovano, E., additional, Colonna, N., additional, Castelluccio, D., additional, Console Camprini, P., additional, Cosentino, L., additional, Dietz, M., additional, Ducasse, Q., additional, Finocchiaro, P., additional, Le Naour, C., additional, Massimi, C., additional, Mengoni, A., additional, Nolte, R., additional, Tassan-Got, L., additional, Terranova, N., additional, Vannini, G., additional, Ventura, A., additional, Aberle, O., additional, Alcayne, V., additional, Amaducci, S., additional, Andrzejewski, J., additional, Audouin, L., additional, Babiano-Suarez, V., additional, Bacak, M., additional, Barbagallo, M., additional, Bennett, S., additional, Berthoumieux, E., additional, Billowes, J., additional, Bosnar, D., additional, Brown, A., additional, Busso, M., additional, Caamaño, M., additional, Caballero-Ontanaya, L., additional, Calviño, F., additional, Calviani, M., additional, Cano-Ott, D., additional, Casanovas, A., additional, Cerutti, F., additional, Chiaveri, E., additional, Cortés, G., additional, Cortés-Giraldo, M. A., additional, Cristallo, S., additional, Damone, L. A., additional, Davies, P. J., additional, Diakaki, M., additional, Domingo-Pardo, C., additional, Dressler, R., additional, Dupont, E., additional, Durán, I., additional, Eleme, Z., additional, Fernández-Domínguez, B., additional, Ferrari, A., additional, Göbel, K., additional, Garg, R., additional, Gawlik-Ramiega, R. A., additional, Gilardoni, S., additional, Gonçalves, I. F., additional, González-Romero, E., additional, Guerrero, C., additional, Gunsing, F., additional, Harada, H., additional, Heinitz, S., additional, Heyse, J., additional, Jenkins, D. G., additional, Junghans, A., additional, Käppeler, F., additional, Kadi, Y., additional, Kimura, A., additional, Knapová, I., additional, Kokkoris, M., additional, Krtička, M., additional, Kurtulgil, D., additional, Ladarescu, I., additional, Lederer-Woods, C., additional, Leeb, H., additional, Lerendegui-Marco, J., additional, Lonsdale, S. J., additional, Macina, D., additional, Martínez, T., additional, Masi, A., additional, Mastinu, P., additional, Mastromarco, M., additional, Maugeri, E. A., additional, Mazzone, A., additional, Mendoza, E., additional, Michalopoulou, V., additional, Milazzo, P. M., additional, Mingrone, F., additional, Moreno-Soto, J., additional, Musumarra, A., additional, Negret, A., additional, Ogállar, F., additional, Oprea, A., additional, Patronis, N., additional, Pavlik, A., additional, Perkowski, J., additional, Piersanti, L., additional, Petrone, C., additional, Porras, I., additional, Praena, J., additional, Quesada, J. M., additional, Ramos-Doval, D., additional, Rauscher, T., additional, Reifarth, R., additional, Rochman, D., additional, Rubbia, C., additional, Sabaté-Gilarte, M., additional, Saxena, A., additional, Schillebeeckx, P., additional, Schumann, D., additional, Sekhar, A., additional, Smith, A. G., additional, Sosnin, N. V., additional, Sprung, P., additional, Stamatopoulos, A., additional, Tagliente, G., additional, Tain, J. L., additional, Tarifeño-Saldivia, A., additional, Thomas, Th., additional, Torres-Sánchez, P., additional, Tsinganis, A., additional, Ulrich, J., additional, Urlass, S., additional, Valenta, S., additional, Variale, V., additional, Vaz, P., additional, Vescovi, D., additional, Vlachoudis, V., additional, Vlastou, R., additional, Wallner, A., additional, Woods, P. J., additional, Wright, T., additional, and Žugec, P., additional
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- 2023
- Full Text
- View/download PDF
131. Detector set up for the measurements of the neutron-induced fission cross section of 235U relative to n-p scattering up to 150 MeV at CERN-n_TOF
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Pirovano, E., primary, Manna, A., additional, Colonna, N., additional, Console Camprini, P., additional, Cosentino, L., additional, Dietz, M., additional, Ducasse, Q., additional, Finocchiaro, P., additional, Massimi, C., additional, Mengoni, A., additional, Nolte, R., additional, Radeck, D., additional, Tassan-Got, L., additional, Terranova, N., additional, Ventura, A., additional, Aberle, O., additional, Alcayne, V., additional, Amaducci, S., additional, Andrzejewski, J., additional, Audouin, L., additional, Babiano-Suarez, V., additional, Bacak, M., additional, Barbagallo, M., additional, Bennett, S., additional, Berthoumieux, E., additional, Billowes, J., additional, Bosnar, D., additional, Brown, A., additional, Busso, M., additional, Caamaño, M., additional, Caballero-Ontanaya, L., additional, Calviño, F., additional, Calviani, M., additional, Cano-Ott, D., additional, Casanovas, A., additional, Cerutti, F., additional, Chiaveri, E., additional, Cortés, G., additional, Cortés-Giraldo, M. A., additional, Cristallo, S., additional, Damone, L. A., additional, Davies, P. J., additional, Diakaki, M., additional, Domingo-Pardo, C., additional, Dressler, R., additional, Dupont, E., additional, Durán, I., additional, Eleme, Z., additional, Fernández-Domínguez, B., additional, Ferrari, A., additional, Göbel, K., additional, Garg, R., additional, Gawlik-Ramie˛ga, A., additional, Gilardoni, S., additional, Gonçalves, I. F., additional, González-Romero, E., additional, Guerrero, C., additional, Gunsing, F., additional, Harada, H., additional, Heinitz, S., additional, Heyse, J., additional, Jenkins, D. G., additional, Junghans, A., additional, Käppeler†, F., additional, Kadi, Y., additional, Kimura, A., additional, Knapová, I., additional, Kokkoris, M., additional, Krtička, M., additional, Kurtulgil, D., additional, Ladarescu, I., additional, Lederer-Woods, C., additional, Leeb, H., additional, Lerendegui-Marco, J., additional, Lonsdale, S. J., additional, Macina, D., additional, Martínez, T., additional, Masi, A., additional, Mastinu, P., additional, Mastromarco, M., additional, Maugeri, E. A., additional, Mazzone, A., additional, Mendoza, E., additional, Michalopoulou, V., additional, Milazzo, P. M., additional, Mingrone, F., additional, Moreno-Soto, J., additional, Musumarra, A., additional, Negret, A., additional, Ogállar, F., additional, Oprea, A., additional, Patronis, N., additional, Pavlik, A., additional, Perkowski, J., additional, Piersanti, L., additional, Petrone, C., additional, Porras, I., additional, Praena, J., additional, Quesada, J. M., additional, Ramos-Doval, D., additional, Rauscher, T., additional, Reifarth, R., additional, Rochman, D., additional, Rubbia, C., additional, Sabaté-Gilarte, M., additional, Saxena, A., additional, Schillebeeckx, P., additional, Schumann, D., additional, Sekhar, A., additional, Smith, A. G., additional, Sosnin, N. V., additional, Sprung, P., additional, Stamatopoulos, A., additional, Tagliente, G., additional, Tain, J. L., additional, Tarifeño-Saldivia, A., additional, Thomas, Th., additional, Torres-Sánchez, P., additional, Tsinganis, A., additional, Ulrich, J., additional, Urlass, S., additional, Valenta, S., additional, Vannini, G., additional, Variale, V., additional, Vaz, P., additional, Vescovi, D., additional, Vlachoudis, V., additional, Vlastou, R., additional, Wallner, A., additional, Woods, P. J., additional, Wright, T., additional, and Žugec, P., additional
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- 2023
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132. First measurement of the 94Nb(n,γ) cross section at the CERN n_TOF facility
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Balibrea-Correa, J., primary, Babiano-Suárez, V., additional, Lerendegui-Marco, J., additional, Domingo-Pardo, C., additional, Ladarescu, I., additional, Tarifeño-Saldivia, A., additional, Alcayne, V., additional, Cano-Ott, D., additional, González-Romero, E., additional, Martínez, T., additional, Mendoza, E., additional, Guerrero, C., additional, Calviño, F., additional, Casanovas, A., additional, Köster, U., additional, Chiera, N. M., additional, Dressler, R., additional, Maugeri, E. A., additional, Schumann, D., additional, Aberle, O., additional, Altieri, S., additional, Amaducci, S., additional, Andrzejewski, J., additional, Bacak, M., additional, Beltrami, C., additional, Bennett, S., additional, Bernardes, A. P., additional, Berthoumieux, E., additional, Beyer, R., additional, Boromiza, M., additional, Bosnar, D., additional, Caamaño, M., additional, Calviani, M., additional, Cerutti, F., additional, Cescutti, G., additional, Chiaveri, E., additional, Colombetti, P., additional, Colonna, N., additional, Console Camprini, P., additional, Cortés, G., additional, Cortés-Giraldo, M. A., additional, Cosentino, L., additional, Cristallo, S., additional, Dellmann, S., additional, Di Castro, M., additional, Di Maria, S., additional, Diakaki, M., additional, Dietz, M., additional, Dupont, E., additional, Durán, I., additional, Eleme, Z., additional, Fargier, S., additional, Fernández, B., additional, Fernández-Domínguez, B., additional, Finocchiaro, P., additional, Fiore, S., additional, García-Infantes, F., additional, Gawlik-Ramięga, A., additional, Gervino, G., additional, Gilardoni, S., additional, Gunsing, F., additional, Gustavino, C., additional, Heyse, J., additional, Hillman, W., additional, Jenkins, D. G., additional, Jericha, E., additional, Junghans, A., additional, Kadi, Y., additional, Kaperoni, K., additional, Kaur, G., additional, Kimura, A., additional, Knapová, I., additional, Kokkoris, M., additional, Krtička, M., additional, Kyritsis, N., additional, Lederer-Woods, C., additional, Lerner, G., additional, Manna, A., additional, Masi, A., additional, Massimi, C., additional, Mastinu, P., additional, Mastromarco, M., additional, Mazzone, A., additional, Mengoni, A., additional, Michalopoulou, V., additional, Milazzo, P. M., additional, Mucciola, R., additional, Murtas, F., additional, Musacchio-Gonzalez, E., additional, Musumarra, A., additional, Negret, A., additional, Pérez de Rada, A., additional, Pérez-Maroto, P., additional, Patronis, N., additional, Pavón-Rodríguez, J. A., additional, Pellegriti, M. G., additional, Perkowski, J., additional, Petrone, C., additional, Pirovano, E., additional, Plaza, J., additional, Pomp, S., additional, Porras, I., additional, Praena, J., additional, Quesada, J. M., additional, Reifarth, R., additional, Rochman, D., additional, Romanets, Y., additional, Rubbia, C., additional, Sánchez-Caballero, A., additional, Sabaté-Gilarte, M., additional, Schillebeeckx, P., additional, Sekhar, A., additional, Smith, A. G., additional, Sosnin, N. V., additional, Stamati, M. E., additional, Sturniolo, A., additional, Tagliente, G., additional, Tarrío, D., additional, Torres-Sánchez, P., additional, Vagena, E., additional, Valenta, S., additional, Variale, V., additional, Vaz, P., additional, Vecchio, G., additional, Vescovi, D., additional, Vlachoudis, V., additional, Vlastou, R., additional, Wallner, A., additional, Woods, P. J., additional, Wright, T., additional, Zarrella, R., additional, and Žugec, P., additional
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- 2023
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133. Overview of the dissemination of n_TOF experimental data and resonance parameters
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Dupont, E., primary, Otuka, N., additional, Rochman, D., additional, Nogèure, G., additional, Aberle, O., additional, Alcayne, V., additional, Altieri, S., additional, Amaducci, S., additional, Andrzejewski, J., additional, Babiano-Suarez, V., additional, Bacak, M., additional, Balibrea, J., additional, Beltrami, C., additional, Bennett, S., additional, Bernardes, A.P., additional, Berthoumieux, E., additional, Beyer, R., additional, Boromiza, M., additional, Bosnar, D., additional, Caamaño, M., additional, Calviño, F., additional, Calviani, M., additional, Cano-Ott, D., additional, Casanovas, A., additional, Cerutti, F., additional, Cescutti, G., additional, Chiaveri, E., additional, Colombetti, P., additional, Colonna, N., additional, Console Camprini, P., additional, Cortés, G., additional, Cortés-Giraldo, M.A., additional, Cosentino, L., additional, Cristallo, S., additional, Dellmann, S., additional, Di Castro, M., additional, Di Maria, S., additional, Diakaki, M., additional, Dietz, M., additional, Domingo-Pardo, C., additional, Dressler, R., additional, Durán, I., additional, Eleme, Z., additional, Fargier, S., additional, Fernández, B., additional, Fernández-Domínguez, B., additional, Finocchiaro, P., additional, Fiore, S., additional, Furman, V., additional, García-Infantes, F., additional, Gawlik-Ramięga, A., additional, Gervino, G., additional, Gilardoni, S., additional, González-Romero, E., additional, Guerrero, C., additional, Gunsing, F., additional, Gustavino, C., additional, Heyse, J., additional, Hillman, W., additional, Jenkins, G.D., additional, Jericha, E., additional, Junghans, A., additional, Kadi, Y., additional, Kaperoni, K., additional, Kaur, G., additional, Kimura, A., additional, Knapová, I., additional, Kokkoris, M., additional, Kopatch, Y., additional, Krtička, M., additional, Kyritsis, N., additional, Ladarescu, I., additional, Lederer-Woods, C., additional, Lerendegui-Marco, J., additional, Lerner, G., additional, Manna, A., additional, Martínez, T., additional, Masi, A., additional, Massimi, C., additional, Mastinu, P., additional, Mastromarco, M., additional, Maugeri, E.A., additional, Mazzone, A., additional, Mendoza, E., additional, Mengoni, A., additional, Michalopoulou, V., additional, Milazzo, P.M., additional, Mucciola, R., additional, Murtas, F., additional, Musacchio-Gonzalez, E., additional, Musumarra, A., additional, Negret, A., additional, Pérez de Rada, A., additional, Pérez-Maroto, P., additional, Patronis, N., additional, Pavón-Rodrgíuez, J.A., additional, Pellegriti, M.G., additional, Perkowski, J., additional, Petrone, C., additional, Pirovano, E., additional, Plaza, J., additional, Pomp, S., additional, Porras, I., additional, Praena, J., additional, Quesada, J.M., additional, Reifarth, R., additional, Romanets, Y., additional, Rubbia, C., additional, Sánchez-Caballero, A., additional, Sabaté-Gilarte, M., additional, Schillebeeckx, P., additional, Schumann, D., additional, Sekhar, A., additional, Smith, A.G., additional, Sosnin, N.V., additional, Stamati, M.E., additional, Sturniolo, A., additional, Tagliente, G., additional, Tarifeño-Saldivia, A., additional, Taríro, D., additional, Torres-Sánchez, P., additional, Vagena, E., additional, Valenta, S., additional, Variale, V., additional, Vaz, P., additional, Vecchio, G., additional, Vescovi, D., additional, Vlachoudis, V., additional, Vlastou, R., additional, Wallner, A., additional, Woods, P.J., additional, Wright, T., additional, Zarrella, R., additional, and Žugec, P., additional
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- 2023
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134. Guía clínica para el manejo de la faringoamigdalitis aguda del adulto
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Cots Yago JM, Alós Cortés JI, Bárcena Caamaño M, Boleda Relats X, Cañada Merino JL, Gómez Gabaldón N, Mendoza Barbero A, Vilaseca González I, and Llor Vila C
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Faringoamigdalitis aguda ,adulto ,diagnóstico ,tratamiento. Streptococcus pyogenes ,antibióticos ,Pharmacy and materia medica ,RS1-441 - Abstract
La faringoamigdalitis aguda (FAA) en el adulto es una de las enfermedades infecciosas más comunes en la consulta del médico de familia. La etiología más frecuente es viral. Dentro de la etiología bacteriana, el principal agente responsable es Streptococcus pyogenes o estreptococo β-hemolítico del grupo A (EBHGA), causante del 5-30% de los casos. En el manejo diagnóstico las escalas de valoración clínica, para predecir la posible etiología bacteriana, son una buena ayuda para seleccionar a qué pacientes se deben practicar las técnicas de detección rápida de antígeno estreptocócico. Es conocido que, en general, sin estas técnicas, se tiende al sobrediagnóstico de FAA estreptocócica, con la consiguiente prescripción innecesaria de antibióticos, muchas veces de amplio espectro. Así, con el manejo de las escalas y la técnica de diagnóstico rápido, elaboramos los algoritmos de manejo de la FAA. Los objetivos del tratamiento son acelerar la resolución de los síntomas, reducir el tiempo de contagio y prevenir las complicaciones supurativas locales y no supurativas. Los antibióticos de elección para el tratamiento de la FAA estreptocócica son penicilina y amoxicilina. La asociación de amoxicilina y clavulánico no está indicada en el tratamiento inicial en la infección aguda. Los macrólidos tampoco son un tratamiento de primera elección; su uso debe reservarse para pacientes con alergia a la penicilina. Es importante en nuestro país adecuar tanto el diagnóstico de la FAA bacteriana y la prescripción de antibióticos a la evidencia científica disponible. La implantación de protocolos de actuación en las farmacias comunitarias puede ser de utilidad para identificar y cribar los casos que no requieran tratamiento antibiótico.
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- 2015
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135. $^{74}$Ge($n,\gamma $) cross section below 70 keV measured at n_TOF CERN
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Lederer-Woods, C, Aberle, O, Andrzejewski, J, Audouin, L, Bécares, V, Bacak, M, Balibrea, J, Barbagallo, M, Barros, S, Battino, U, Bečvář, F, Beinrucker, C, Berthoumieux, E, Billowes, J, Bosnar, D, Brugger, M, Caamaño, M, Calviño, F, Calviani, M, Cano-Ott, D, Cardella, R, Casanovas, A, Castelluccio, D M, Cerutti, F, Chen, Y H, Chiaveri, E, Colonna, N, Cortés, G, Cortés-Giraldo, M A, Cosentino, L, Damone, L A, Diakaki, M, Domingo-Pardo, C, Dressler, R, Dupont, E, Durán, I, Fernández-Domínguez, B, Ferrari, A, Ferreira, P, Finocchiaro, P, Furman, V, Göbel, K, García, A R, Gawlik-Ramięga, A, Glodariu, T, Gonçalves, I F, González-Romero, E, Goverdovski, A, Griesmayer, E, Guerrero, C, Gunsing, F, Harada, H, Heftrich, T, Heinitz, S, Heyse, J, Jenkins, D G, Jericha, E, Käppeler, F, Kadi, Y, Katabuchi, T, Kavrigin, P, Ketlerov, V, Khryachkov, V, Kimura, A, Kivel, N, Kokkoris, M, Krtička, M, Leal-Cidoncha, E, Leeb, H, Lerendegui-Marco, J, Meo, S Lo, Lonsdale, S J, Losito, R, Macina, D, Marganiec, J, Martínez, T, Massimi, C, Mastinu, P, Mastromarco, M, Matteucci, F, Maugeri, E A, Mendoza, E, Mengoni, A, Milazzo, P M, Mingrone, F, Mirea, M, Montesano, S, Musumarra, A, Nolte, R, Oprea, A, Patronis, N, Pavlik, A, Perkowski, J, Porras, I, Praena, J, Quesada, J M, Rajeev, K, Rauscher, T, Reifarth, R, Riego-Perez, A, Rout, P C, Rubbia, C, Ryan, J A, Sabaté-Gilarte, M, Saxena, A, Schillebeeckx, P, Schmidt, S, Schumann, D, Sedyshev, P, Smith, A G, Stamatopoulos, A, Tagliente, G, Tain, J L, Tarifeño-Saldivia, A, Tassan-Got, L, Tsinganis, A, Valenta, S, Vannini, G, Variale, V, Vaz, P, Ventura, A, Vlachoudis, V, Vlastou, R, Wallner, A, Warren, S, Weigand, M, Weiss, C, Wolf, C, Woods, P J, Wright, T, Žugec, P, Institut de Physique Nucléaire d'Orsay (IPNO), 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), Institut de Recherches sur les lois Fondamentales de l'Univers (IRFU), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay, n_TOF, Universitat Politècnica de Catalunya. Departament de Física, and Universitat Politècnica de Catalunya. ANT - Advanced Nuclear Technologies Research Group
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neutron capture, 74Ge, neutron time of flight, n_TOF ,Nuclear and High Energy Physics ,Física [Àrees temàtiques de la UPC] ,Physical ,[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex] ,Física ,Nuclear Physics - Experiment - Abstract
The version of record os available online at:https://doi.org/10.1140/epja/s10050-022-00878-5 Neutron capture reaction cross sections on 74Ge are of importance to determine 74Ge production during the astrophysical slow neutron capture process. We present new resonancedataon74Ge(n,¿)reactionsbelow70keVneutron energy. We calculate Maxwellian averaged cross sections, combining our data below 70 keV with evaluated cross sections at higher neutron energies. Our stellar cross sections are in agreement with a previous activation measurement performed at Forschungszentrum Karlsruhe by Marganiec et al., once their data has been re-normalised to account for an update in the reference cross section used in that experiment Peer Reviewed Article escrit per 123 autors/autores C. Lederer-Woods, O. Aberle, J. Andrzejewski, L. Audouin, V. Bécares, M. Bacak, J. Balibrea, M. Barbagallo, S. Barros, U. Battino, F. Bečvář, C. Beinrucker, E. Berthoumieux, J. Billowes, D. Bosnar, M. Brugger, M. Caamaño, F. Calviño, M. Calviani, D. Cano-Ott, R. Cardella, A. Casanovas, D. M. Castelluccio, F. Cerutti, Y. H. Chen, E. Chiaveri, N. Colonna, G. Cortés, M. A. Cortés-Giraldo, L. Cosentino, L. A. Damone, M. Diakaki, C. Domingo-Pardo, R. Dressler, E. Dupont, I. Durán, B. Fernández-Domínguez, A. Ferrari, P. Ferreira, P. Finocchiaro, V. Furman, K. Göbel, A. R. García, A. Gawlik-Ramięga, T. Glodariu, I. F. Gonçalves, E. González-Romero, A. Goverdovski, E. Griesmayer, C. Guerrero, F. Gunsing, H. Harada, T. Heftrich, S. Heinitz, J. Heyse, D. G. Jenkins, E. Jericha, F. Käppeler, Y. Kadi, T. Katabuchi, P. Kavrigin, V. Ketlerov, V. Khryachkov, A. Kimura, N. Kivel, M. Kokkoris, M. Krtička, E. Leal-Cidoncha, H. Leeb, J. Lerendegui-Marco, S. Lo Meo, S. J. Lonsdale, R. Losito, D. Macina, J. Marganiec, T. Martínez, C. Massimi, P. Mastinu, M. Mastromarco, F. Matteucci, E. A. Maugeri, E. Mendoza, A. Mengoni, P. M. Milazzo, F. Mingrone, M. Mirea, S. Montesano, A. Musumarra, R. Nolte, A. Oprea, N. Patronis, A. Pavlik, J. Perkowski, I. Porras, J. Praena, J. M. Quesada, K. Rajeev, T. Rauscher, R. Reifarth, A. Riego-Perez, P. C. Rout, C. Rubbia, J. A. Ryan, M. Sabaté-Gilarte, A. Saxena, P. Schillebeeckx, S. Schmidt, D. Schumann, P. Sedyshev, A. G. Smith, A. Stamatopoulos, G. Tagliente, J. L. Tain, A. Tarifeño-Saldivia, L. Tassan-Got, A. Tsinganis, S. Valenta, G. Vannini, V. Variale, P. Vaz, A. Ventura, V. Vlachoudis, R. Vlastou, A. Wallner, S. Warren, M. Weigand, C. Weiss, C. Wolf, P. J. Woods, T. Wright, P. Žugec
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- 2022
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136. Hyperplastic Pulpitis Management with Endocrown: A Case Report
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Pérez Jardón A, Otero Gayoso N, Otero. Rey E.M, Guerra Caamaño M, Chamorro-Petronacci C.M, Blanco Carrión A, and Rivas Mundiña B
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General Dentistry - Abstract
Background: Pulp polyp (PP) or pulp hyperplasia is a type of irreversible pulpitis that occurs more frequently in young teeth. It is characterized by an exophytic proliferation of granulation tissue with a pinkish-red colour and fibrous consistency, usually asymptomatic. Case Presentation: Conservative approach for a PP in a young permanent lower molar using orthograde root canal treatment and subsequent endocrown placement with a 6-month follow-up. A detailed clinical history was carried out, as well as a radiographic study of the lesion, palpation and pulp sensitivity tests. The clinical diagnosis was pulp hyperplasia or PP, confirmed by histopathological analysis. Results: Treatment of this case required four appointments: surgical excision of the PP, cleaning and shaping of the root canal system, three-dimensional filling of the canals, cementation and adjustment of the endocrown, thereby achieving remission of symptoms and restitution of chewing function. Conclusion: Conservative treatment is a reproducible procedure that has shown satisfactory results in the lower first molar with the presence of a PP.
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- 2022
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137. First high resolution measurement of neutron capture resonances in 176Yb at the n_TOF CERN facility.
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García-Infantes, F., Praena, J., Casanovas, A., Mastromarco, M., Aberle, O., Alcayne, V., Altieri, S., Amaducci, S., Amar Es-Sghir, H., Andrzejewski, J., Babiano-Suarez, V., Bacak, M., Balibrea, J., Bennett, S., Bernardes, A.P., Berthoumieux, E., Bosnar, D., Busso, M., Caamaño, M., and Calviño, F.
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NEUTRON capture ,RESONANCE ,TIME-of-flight measurements ,RADIOISOTOPES ,NUCLEAR medicine - Abstract
Several international agencies recommend the study of new routes and new facilities for producing radioisotopes with application to nuclear medicine.
177 Lu is a versatile radioisotope used for therapy and diagnosis (theranostics) of cancer with good success in neuroendocrine tumours that is being studied to be applied to a wider range of tumours.177 Lu is produced in few nuclear reactors mainly by the neutron capture on176 Lu. However, it could be produced at high-intensity celeratorbased neutron facilities. The energy of the neutrons in accelerator-based neutron facilities is higher than in thermal reactors.Thus, experimental data on the176 Yb(n,γ) cross-section in the eV and keV region are mandatory to calculate accurately the production of177 Yb, which beta decays to177 Lu. At present, there are not experimental data available from thermal to 3 keV of the176 Yb(n,γ) cross-section. In addition, there is no data in the resolved resonance region (RRR). This contribution shows the first results of the176 Yb capture measurement performed at the n_TOF facility at CERN. [ABSTRACT FROM AUTHOR]- Published
- 2023
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138. Fission-fragment yields measured in Coulomb-induced fission of 234,235,236,238U and 237,238Np with the R3B/SOFIA setup.
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Chatillon, A., Boutoux, G., Gorbinet, T., Grente, L., Martin, J.-F., Pellereau, E., Taieb, J., Alvarez-Pol, H., Audouin, L., Ayyad, Y., Bélier, G., Benlliure, J., Caamaño, M., Casarejos, E., Cortina-Gil, D., Ebran, A., Farget, F., Fernández-Domínguez, B., Heinz, A., and Johansson, H. T.
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NUCLEAR fission ,RADIOISOTOPES ,RADIOACTIVE nuclear beams ,NEUTRON emission ,NUCLEAR structure - Abstract
Low energy fission of
234,235,236,238 U and237,238 Np radioactive beams, provided by the GSI/FRS facility, has been studied using the R3 B/SOFIA setup. The latter allows, on an event-by-event basis, to simultaneously identify, in terms of their mass and atomic numbers, the fissioning nucleus in coincidence with both fission fragments after prompt-neutron emission. This presentation reports on new results on elemental, isobaric and isotopic yields. [ABSTRACT FROM AUTHOR]- Published
- 2023
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139. Results of the 244Cm, 246Cm and 248Cm neutron-induced capture cross sections measurements at EAR1 and EAR2 of the n_TOF facility.
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Alcayne, V., Mendoza, E., Cano-Ott, D., Kimura, A., Aberle, O., Amaducci, S., Andrzejewski, J., Audouin, L., Babiano-Suarez, V., Bacak, M., Barbagallo, M., Bécares, V., Bečvář, F., Bellia, G., Berthoumieux, E., Billowes, J., Bosnar, D., Brown, A. S., Busso, M., and Caamaño, M.
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NUCLEAR cross sections ,NUCLEAR reactors ,TRANSMUTATION (Chemistry) ,NEUTRON emission ,HEAVY elements - Abstract
Accurate neutron capture cross section data for minor actinides (MAs) are required to estimate the production and transmutation rates of MAs in light water reactors, critical fast reactors like Gen-IV systems, and other innovative reactor systems such as accelerator driven systems (ADS). In particular,
244 Cm,246 Cm and248 Cm play a role in the transport, storage and transmutation of the nuclear waste of the current nuclear reactors, due to the contribution of these isotopes to the radiotoxicity, neutron emission, and decay heat in the spent nuclear fuel. Also, capture reactions in these Cm isotopes open the path for the formation of heavier elements. In this work, the results of the capture cross section measurement on244 Cm,246 Cm and248 Cm performed at the CERN n_TOF facility are presented. It is important to notice that the Cm samples used in the experiment at n_TOF have been used previously in an experiment at J-PARC, this experiment and the previous one done in the 70s with a nuclear explosion were the only previous capture experiments for these isotopes. At n_TOF, the capture cross section measurements of244 Cm,246 Cm and248 Cm were performed at the 20 m vertical flight path (EAR2) with three C6 D6 total energy detectors. In addition, the cross section of 244Cm was measured at the 185 m flight path (EAR1) with a Total Absorption Calorimeter (TAC). The combination of measurements in EAR1 and EAR2 has contributed to controlling and reducing the systematic uncertainties in the results. The compatibility of the different measurements performed and the techniques to obtain the results are presented in this paper as well as the procedure to obtain the resonance parameters. [ABSTRACT FROM AUTHOR]- Published
- 2023
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140. A mask for high-intensity heavy-ion beams in the MAYA active target
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Rodríguez-Tajes, C., Pancin, J., Damoy, S., Roger, T., Babo, M., Caamaño, M., Farget, F., Grinyer, G.F., Jacquot, B., Pérez-Loureiro, D., Ramos, D., and Suzuki, D.
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- 2014
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141. Pulmonary arterial hypertension due to ventriculoatrial shunts: A case report and literature review
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Otero-Fernández, P., primary, Negreira-Caamaño, M., additional, Moreno-Flores, A., additional, Calvo-Alonso, M., additional, Sosa-Cabezas, J.P., additional, Mateos-Romero, A., additional, and Villena-Martín, M., additional
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- 2022
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142. Hyperplastic Pulpitis Management with Endocrown: A Case Report
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Jardón A, Pérez, primary, Gayoso N, Otero, additional, Rey E.M, Otero., additional, Caamaño M, Guerra, additional, C.M, Chamorro-Petronacci, additional, Carrión A, Blanco, additional, and Mundiña B, Rivas, additional
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- 2022
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143. Tako-Tsubo invertido como primer evento cardiológico en un paciente con distrofia miotónica de Steinert
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Negreira Caamaño, M., primary, López Lluva, M.T., additional, and Abellán Huerta, J., additional
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- 2022
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144. Inverted Tako-Tsubo cardiomyopathy as the first cardiac manifestation in patient with Steinert’s disease
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Negreira Caamaño, M., primary, López Lluva, M.T., additional, and Abellán Huerta, J., additional
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- 2022
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145. 13,14B(n, γ) via Coulomb Dissociation for Nucleosynthesis towards the r-Process
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Altstadt, S.G., Adachi, T., Aksyutina, Y., Alcantara, J., Alvarez-Pol, H., Ashwood, N., Atar, L., Aumann, T., Avdeichikov, V., Barr, M., Beceiro, S., Bemmerer, D., Benlliure, J., Bertulani, C.A., Boretzky, K., Borge, M.J.G., Burgunder, G., Caamano, M., Caesar, C., Casarejos, E., Catford, W., Cederkäll, J., Chakraborty, S., Chartier, M., Chulkov, L., Cortina-Gil, D., Datta Pramanik, U., Diaz Fernandez, P., Dillmann, I., Elekes, Z., Enders, J., Ershova, O., Estrade, A., Farinon, F., Fraile, L.M., Freer, M., Freudenberger, M., Fynbo, H.O.U., Galaviz, D., Geissel, H., Gernhäuser, R., Göbel, K., Golubev, P., Gonzalez Diaz, D., Hagdahl, J., Heftrich, T., Heil, M., Heine, M., Heinz, A., Henriques, A., Holl, M., Holt, J.D., Ickert, G., Ignatov, A., Jakobsson, B., Johansson, H.T., Jonson, B., Kalantar-Nayestanaki, N., Kanungo, R., Kelic-Heil, A., Knöbel, R., Kröll, T., Krücken, R., Kurcewicz, J., Kurz, N., Labiche, M., Langer, C., Le Bleis, T., Lemmon, R., Lepyoshkina, O., Machado, J., Marganiec, J., Maroussov, V., Menéndez, J., Mostazo, M., Movsesyan, A., Najafi, M.A., Nilsson, T., Nociforo, C., Panin, V., Perea, A., Pietri, S., Plag, R., Prochazka, A., Rahaman, A., Rastrepina, G., Reifarth, R., Ribeiro, G., Ricciardi, M.V., Rigollet, C., Riisager, K., Röder, M., Rossi, D., Sanchez del Rio, J., Savran, D., Scheit, H., Schwenk, A., Simon, H., Simonis, J., Sonnabend, K., Sorlin, O., Stoica, V., Streicher, B., Taylor, J., Tengblad, O., Terashima, S., Thies, R., Togano, Y., Uberseder, E., Van de Walle, J., Velho, P., Volkov, V., Wagner, A., Wamers, F., Weick, H., Weigand, M., Wheldon, C., Wilson, G., Wimmer, C., Winfield, J.S., Woods, P., Yakorev, D., Zhukov, M.V., Zilges, A., Zoric, M., and Zuber, K.
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- 2014
- Full Text
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146. Measurement of the angular distribution of fission fragments using a PPAC assembly at CERN n_TOF
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Tarrío, D., Leong, L.S., Audouin, L., Duran, I., Paradela, C., Tassan-Got, L., Le Naour, C., Bacri, C.O., Petitbon, V., Mottier, J., Caamaño, M., Altstadt, S., Andrzejewski, J., Barbagallo, M., Bécares, V., Bečvář, F., Belloni, F., Berthoumieux, E., Billowes, J., Boccone, V., Bosnar, D., Brugger, M., Calviani, M., Calviño, F., Cano-Ott, D., Carrapiço, C., Cerutti, F., Chiaveri, E., Chin, M., Colonna, N., Cortés, G., Cortés-Giraldo, M.A., Diakaki, M., Domingo-Pardo, C., Dzysiuk, N., Eleftheriadis, C., Ferrari, A., Fraval, K., Ganesan, S., García, A.R., Giubrone, G., Gómez-Hornillos, M.B., Gonçalves, I.F., González-Romero, E., Griesmayer, E., Guerrero, C., Gunsing, F., Gurusamy, P., Jenkins, D.G., Jericha, E., Kadi, Y., Käppeler, F., Karadimos, D., Koehler, P., Kokkoris, M., Krtička, M., Kroll, J., Langer, C., Lederer, C., Leeb, H., Losito, R., Manousos, A., Marganiec, J., Martínez, T., Massimi, C., Mastinu, P.F., Mastromarco, M., Meaze, M., Mendoza, E., Mengoni, A., Milazzo, P.M., Mingrone, F., Mirea, M., Mondalaers, W., Pavlik, A., Perkowski, J., Plompen, A., Praena, J., Quesada, J.M., Rauscher, T., Reifarth, R., Riego, A., Roman, F., Rubbia, C., Sarmento, R., Schillebeeckx, P., Schmidt, S., Tagliente, G., Tain, J.L., Tsinganis, A., Valenta, S., Vannini, G., Variale, V., Vaz, P., Ventura, A., Versaci, R., Vermeulen, M.J., Vlachoudis, V., Vlastou, R., Wallner, A., Ware, T., Weigand, M., Weiß, C., Wright, T.J., and Žugec, P.
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- 2014
- Full Text
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147. Nuclear data activities at the n_TOF facility at CERN
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Gunsing, F., Aberle, O., Andrzejewski, J., Audouin, L., Bécares, V., Bacak, M., Balibrea-Correa, J., Barbagallo, M., Barros, S., Bečvář, F., Beinrucker, C., Belloni, F., Berthoumieux, E., Billowes, J., Bosnar, D., Brugger, M., Caamaño, M., Calviño, F., Calviani, M., Cano-Ott, D., Cardella, R., Casanovas, A., Castelluccio, D. M., Cerutti, F., Chen, Y. H., Chiaveri, E., Colonna, N., Cortés-Giraldo, M. A., Cortés, G., Cosentino, L., Damone, L. A., Deo, K., Diakaki, M., Domingo-Pardo, C., Dressler, R., Dupont, E., Durán, I., Fernández-Domínguez, B., Ferrari, A., Ferreira, P., Finocchiaro, P., Frost, R. J. W., Furman, V., Ganesan, S., García, A. R., Gawlik, A., Gheorghe, I., Glodariu, T., Gonçalves, I. F., González, E., Goverdovski, A., Griesmayer, E., Guerrero, C., Göbel, K., Harada, H., Heftrich, T., Heinitz, S., Hernández-Prieto, A., Heyse, J., Jenkins, D. G., Jericha, E., Käppeler, F., Kadi, Y., Katabuchi, T., Kavrigin, P., Ketlerov, V., Khryachkov, V., Kimura, A., Kivel, N., Kokkoris, M., Krtička, M., Leal-Cidoncha, E., Lederer, C., Leeb, H., Lerendegui, J., Licata, M., Lo Meo, S., Lonsdale, S. J., Losito, R., Macina, D., Marganiec, J., Martínez, T., Masi, A., Massimi, C., Mastinu, P., Mastromarco, M., Matteucci, F., Maugeri, E. A., Mazzone, A., Mendoza, E., Mengoni, A., Milazzo, P. M., Mingrone, F., Mirea, M., Montesano, S., Musumarra, A., Nolte, R., Oprea, A., Palomo-Pinto, F. R., Paradela, C., Patronis, N., Pavlik, A., Perkowski, J., Porras, I., Praena, J., Quesada, J. M., Rajeev, K., Rauscher, T., Reifarth, R., Riego-Perez, A., Robles, M., Rout, P., Radeck, D., Rubbia, C., Ryan, J. A., Sabaté-Gilarte, M., Saxena, A., Schillebeeckx, P., Schmidt, S., Schumann, D., Sedyshev, P., Smith, A. G., Stamatopoulos, A., Suryanarayana, S. V., Tagliente, G., Tain, J. L., Tarifeño-Saldivia, A., Tarrío, D., Tassan-Got, L., Tsinganis, A., Valenta, S., Vannini, G., Variale, V., Vaz, P., Ventura, A., Vlachoudis, V., Vlastou, R., Wallner, A., Warren, S., Weigand, M., Weiss, C., Wolf, C., Woods, P. J., Wright, T., Žugec, P., and The n_TOF Collaboration
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- 2016
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148. First results of the 241Am(n,f) cross section measurement at the Experimental Area 2 of the n_TOF facility at CERN
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Eleme Z., Patronis N., Stamatopoulos A., Tsinganis A., Kokkoris M., Michalopoulou V., Diakaki M., Vlastou R., Tassan-Got L, Colonna N., Heyse J., Barbagallo M., Mastromarco M., Macina D., Chiaveri E., Aberle O., Alcayne V., Amaducci S., Andrzejewski J., Audouin L., Babiano-Suarez V, Bacak M., Bennett S., Berthoumieux E., Bosnar D., Brown A. S., Busso M., Caamaño M., Caballero L., Calviani M., Calviño F., Cano-Ott D, Casanovas A., Cerutti F., Cortés G. P., Cortés-Giraldo M. A., Cosentino L., Cristallo S., Damone L. A., Davies P. J., Dietz M., Domingo-Pardo C, Dressler R., Ducasse Q., Dupont E., Durán I., Fernández-Domíngez B., Ferrari A., Ferro-Gonçalves I., Finocchiaro P., Furman V., Garg R., Gawlik A., Gilardoni S., Göbel K., González-Romero E., Guerrero C., Gunsing F., Heinitz S., Jenkins D. G., Jericha E., Jiri U., Junghans A., Kadi Y., Käppeler F., Kimura A., Knapová I., Kopatch Y., Krticˇka M., Kurtulgil D., Ladarescu I., Lederer-Woods C, Lerendegui-Marco J, Lonsdale S. J., Manna A., Martínez T., Masi A., Massimi C., Mastinu P. F., Maugeri E., Mazzone A., Mendoza E., Mengoni A., Milazzo P. M., Millán-Callado M. A., Mingrone F., Moreno-Soto J, Musumarra A., Negret A., Ogállar F., Oprea A., Pavlik A., Perkowski J., Petrone C., Piersanti L., Pirovano E., Porras I., Praena J., Quesada J. M., Ramos Doval D., Reifarth R., Rochman D., Rubbia C., Sabaté-Gilarte M., Saxena A., Schillebeeckx P., Schumann D., Sekhar A., Smith A. G., Sosnin N., Sprung P., Tagliente G., Tain J. L., Tarifeño-Saldivia A. E., Thomas B., Torres-Sánchez P., Urlass S., Valenta S., Vannini G., Variale V., Vaz P., Ventura A., Vescovi D., Vlachoudis V., Wallner A., Woods P. J., Wright T. J., and Žugec P.
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Physics ,QC1-999 - Abstract
Feasibility, design and sensitivity studies on innovative nuclear reactors that could address the issue of nuclear waste transmutation using fuels enriched in minor actinides, require high accuracy cross section data for a variety of neutron-induced reactions from thermal energies to several tens of MeV. The isotope 241Am (T1/2= 433 years) is present in high-level nuclear waste (HLW), representing about 1.8 % of the actinide mass in spent PWR UOx fuel. Its importance increases with cooling time due to additional production from the β-decay of 241Pu with a half-life of 14.3 years. The production rate of 241 Am in conventional reactors, including its further accumulation through the decay of 241Pu and its destruction through transmutation/incineration are very important parameters for the design of any recycling solution. In the present work, the 241 Am(n,f) reaction cross-section was measured using Micromegas detectors at the Experimental Area 2 of the n_TOF facility at CERN. For the measurement, the 235U(n,f) and 238U(n,f) reference reactions were used for the determination of the neutron flux. In the present work an overview of the experimental setup and the adopted data analysis techniques is given along with preliminary results.
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- 2020
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149. Neutron capture cross section measurements of 241Am at the n_TOF facility
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Oprea A., Gunsing F., Schillebeeckx P., Aberle O., Bacak M., Berthoumieux E., Cano-Ott D, Diakaki M., Dupont E., Geslot B., Glodariu T., Heyse J., Mendoza E., Negret A., Alcayne V., Amaducci S., Andrzejewski J., Audouin L., Bécares V., Babiano-Suarez V, Barbagallo M., Becčvář F., Bellia G., Billowes J., Bosnar D., Brown A., Busso M., Caamaño M., Caballero-Ontanaya L, Calviño F., Calviani M., Casanovas A., Cerutti F., Chen Y. H., Chiaveri E., Colonna N., Cortés G., Cortés-Giraldo M. A., Cosentino L., Cristallo S., Damone L. A., Dietz M., Domingo-Pardo C, Dressler R., Durán I., Eleme Z., Femández-Domínguez B., Ferrari A., Finocchiaro P., Furman V., Göbel K., Garg R., Gawlik A., Gilardoni S., Goncalves I. F., González-Romero E., Guerrero C., Harada H., Heinitz S., Jenkins D. G., Jericha E., Käppeler F., Kadi Y., Kimura A., Kivel N., Kokkoris M., Kopatch Y., Krtička M., Kurtulgil D., Ladarescu I., Lederer-Woods C, Lerendegui-Marco J, Meo S. Lo, Lonsdale S. J., Macina D., Manna A., Martínez T., Masi A., Massimi C., Mastinu P., Mastromarco M., Matteucci F., Maugeri E. A., Mazzone A., Mengoni A., Michalopoulou V., Milazzo P. M., Mingrone F., Musumarra A., Nolte R., Ogállar F., Patronis N., Pavlik A., Perkowski J., Persanti L., Porras I., Praena J., Quesada J. M., Radeck D., Ramos-Doval D, Reifarth R., Rochman D., Rubbia C., Sabaté-Gilarte M., Saxena A., Schumann D., Smith A. G., Sosnin N. V., Stamatopoulos A., Tagliente G., Tain J. L., Talip T., Tarifeño-Saldivia A., Tassan-Got L, Torres-Sánchez P., Tsinganis A., Ulrich J., Urlass S., Valenta S., Vannini G., Variale V., Vaz P., Ventura A., Vlachoudis V., Vlastou R., Wallner A., Woods P. J., Wright T., and Žugec P.
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Physics ,QC1-999 - Abstract
Neutron capture on 241Am plays an important role in the nuclear energy production and also provides valuable information for the improvement of nuclear models and the statistical interpretation of the nuclear properties. A new experiment to measure the 241Am(n, γ) cross section in the thermal region and the first few resonances below 10 eV has been carried out at EAR2 of the n_TOF facility at CERN. Three neutron-insensitive C6D6 detectors have been used to measure the neutron-capture gamma cascade as a function of the neutron time of flight, and then deduce the neutron capture yield. Preliminary results will be presented and compared with previously obtained results at the same facility in EAR1. In EAR1 the gamma-ray background at thermal energies was about 90% of the signal while in EAR2 is up to a 25 factor much more favorable signal to noise ratio. We also extended the low energy limit down to subthermal energies. This measurement will allow a comparison with neutron capture measurements conducted at reactors and using a different experimental technique.
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- 2020
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150. Setup for the measurement of the 235U(n, f) cross section relative to n-p scattering up to 1 GeV
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Manna A., Aberle O., Alcayne V, Amaducci S., Andrzejewski J., Audouin L., Babiano V-Suarez, Bacak M., Barbagallo M., Bennett S., Berthoumieux E., Bosnar D., Brown A. S., Busso M., Caamaño M., Caballero L., Calviani M., Calvi Fño, Cano-Ott D, Casanovas A., Cerutti F., Chiaveri E., Colonna N., Cortés G. P., Cortés-Giraldo M. A., Coséntino L., Cristallo S., Damone L. A., Davies P. J., Diakaki M., Dietz M., Domingo-Pardo C, Dressler R., Ducasse Q., Dupont E., Durán I., Eleme Z., Fernández-Domíngez B., Ferrari A., Ferro-Goncalves I, Finocchiaro P., Furman V., Garg R., Gawlik A., Gilardoni S., Göbel K., González-Romero E., Guerrero C., Gunsing F, Heinitz S., Heyse J., Jenkins D. G., Jericha E., Jiri U., Junghans A., Kadi Y, Käppeler F, Kimura A., Knapová I., Kokkoris M., Kopatch Y., Krtiička M., Kurtulgil D., Ladarescu I., Lederer-Woods C, Lerendegui-Marco J, Lonsdale S.-J., Macina D., Martínez T, Masi A., Massimi C., Mastinu P. F, Mastromarco M., Maugeri E., Mazzone A., Mendoza E., Mengoni A., Michalopoulou V, Milazzo P. M., Millán-Callado M. A., Mingrone F, Moreno-Soto J, Musumarra A., Negret A., Nolte R., Ogállar F, Oprea A., Patronis N., Pavlik A., Perkowski J., Petrone C., Piersanti L., Pirovano E., Porras I., Praena J., Quesada J.M., Ramos D., Reifarth R., Rochman D., Rubbia C., Sabaté-Gilarte M., Saxena A., Schillebeeckx P., Schumann D., Sekhar A., Smith A.G., Sosnin N., Sprung P., Stamatopoulos A., Tagliente G., Tain J. L., Tarifeno-Saldivia A. E., Tassan-Got L, Thomas B., Torres-Sánchez P., Tsinganis A., Urlass S., Valenta S., Vannini G., Variale V., Vaz P., Ventura A., Vescovi D., Vlachoudis V, Vlastou R., Wallner A., Woods P. J., Wright T J., and Žugec P.
- Subjects
Physics ,QC1-999 - Abstract
The neutron induced fission of 235U is extensively used as a reference for neutron fluence measurements in various applications, ranging from the investigation of the biological effectiveness of high energy neutrons, to the measurement of high energy neutron cross sections of relevance for accelerator driven nuclear systems. Despite its widespread use, no data exist on neutron induced fission of 235U above 200 MeV. The neutron facility n_TOF offers the possibility to improve the situation. The measurement of 235U(n,f) relative to the differential n-p scattering cross-section, was carried out in September 2018 with the aim of providing accurate and precise cross section data in the energy range from 10 MeV up to 1 GeV. In such measurements, Recoil Proton Telescopes (RPTs) are used to measure the neutron flux while the fission events are detected and counted with dedicated detectors. In this paper the measurement campaign and the experimental set-up are illustrated.
- Published
- 2020
- Full Text
- View/download PDF
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