학술논문

Neutron Tagging following Atmospheric Neutrino Events in a Water Cherenkov Detector
Document Type
Working Paper
Author
Abe, K.Haga, Y.Hayato, Y.Hiraide, K.Ieki, K.Ikeda, M.Imaizumi, S.Iyogi, K.Kameda, J.Kanemura, Y.Kataoka, Y.Kato, Y.Kishimoto, Y.Miki, S.Mine, S.Miura, M.Mochizuki, T.Moriyama, S.Nagao, Y.Nakahata, M.Nakajima, T.Nakano, Y.Nakayama, S.Okada, T.Okamoto, K.Orii, A.Sato, K.Sekiya, H.Shiozawa, M.Sonoda, Y.Suzuki, Y.Takeda, A.Takemoto, Y.Takenaka, A.Tanaka, H.Tasaka, S.Tomura, T.Ueno, K.Watanabe, S.Yano, T.Yokozawa, T.Han, S.Irvine, T.Kajita, T.Kametani, I.Kaneyuki, K.Lee, K. P.McLachlan, T.Okumura, K.Richard, E.Tashiro, T.Wang, R.Xia, J.Megias, G. D.Bravo-Berguño, D.Labarga, L.Zaldivar, B.Goldhaber, M.Blaszczyk, F. d. M.Gustafson, J.Kachulis, C.Kearns, E.Raaf, J. L.Stone, J. L.Sulak, L. R.Sussman, S.Wan, L.Wester, T.Pointon, B. W.Bian, J.Carminati, G.Elnimr, M.Griskevich, N. J.Kropp, W. R.Locke, S.Renshaw, A.Smy, M. B.Sobel, H. W.Takhistov, V.Weatherly, P.Ganezer, K. S.Hartfiel, B. L.Hill, J.Keig, W. E.Hong, N.Kim, J. Y.Lim, I. T.Park, R. G.Akiri, T.Bodur, B.Himmel, A.Li, Z.O'Sullivan, E.Scholberg, K.Walter, C. W.Wongjirad, T.Bernard, L.Coffani, A.Drapier, O.Hedri, S. ElGiampaolo, A.Imber, J.Mueller, Th. A.Paganini, P.Quilain, B.Ishizuka, T.Nakamura, T.Jang, J. S.Choi, K.Learned, J. G.Matsuno, S.Smith, S. N.Amey, J.Anthony, L. H. V.Litchfield, R. P.Ma, W. Y.Marin, D.Sztuc, A. A.Uchida, Y.Wascko, M. O.Berardi, V.Catanesi, M. G.Intonti, R. A.Radicioni, E.Calabria, N. F.De Rosa, G.Machado, L. N.Collazuol, G.Iacob, F.Lamoureux, M.Ospina, N.Ludovici, L.Gonin, M.Pronost, G.Maekawa, Y.Nishimura, Y.Cao, S.Friend, M.Hasegawa, T.Ishida, T.Ishii, T.Jakkapu, M.Kobayashi, T.Matsubara, T.Nakadaira, T.Nakamura, K.Oyama, Y.Sakashita, K.Sekiguchi, T.Tsukamoto, T.Boschi, T.Di Lodovico, F.Migenda, J.Sedgwick, S. MolinaTaani, M.Zsoldos, S.Abe, KE.Hasegawa, M.Isobe, Y.Kotsar, Y.Miyabe, H.Ozaki, H.Shiozawa, T.Sugimoto, T.Suzuki, A. T.Takeuchi, Y.Yamamoto, S.Ali, A.Ashida, Y.Bronner, C.Feng, J.Hayashino, T.Hiraki, T.Hirota, S.Huang, K.Jiang, M.Kikawa, T.Mori, M.Murakami, A.Nakamura, KE.Nakaya, T.Patel, N. D.Suzuki, K.Takahashi, S.Tateishi, K.Wendell, R. A.Yasutome, K.Fernandez, P.McCauley, N.Mehta, P.Pritchard, A.Tsui, K. M.Fukuda, Y.Itow, Y.Menjo, H.Mitsuka, G.Murase, M.Muto, F.Niwa, T.Tsukada, T. Suzuki M.Frankiewicz, K.Mijakowski, P.Hignight, J.Jiang, J.Jung, C. K.Li, X.Palomino, J. L.Santucci, G.Vilela, C.Wilking, M. J.Yanagisawa, C.Fukuda, D.Hagiwara, K.Harada, M.Horai, T.Ishino, H.Ito, S.Kayano, T.Kibayashi, A.Kitagawa, H.Koshio, Y.Ma, W.Mori, T.Nagata, H.Piplani, N.Sakai, S.Sakuda, M.Takahira, Y.Xu, C.Yamaguchi, R.Kuno, Y.Barr, G.Barrow, D.Cook, L.Goldsack, A.Samani, S.Simpson, C.Wark, D.Nova, F.Tacik, R.Yang, J. Y.Cole, A.Jenkins, S. J.Malek, M.McElwee, J. M.Stone, O.Thiesse, M. D.Thompson, L. F.Okazawa, H.Choi, Y.Kim, S. B.Yu, I.Ichikawa, A. K.Ito, K.Nishijima, K.Calland, R. G.de Perio, P.Martens, K.Murdoch, M.Vagins, M. R.Koshiba, M.Totsuka, Y.Iwamoto, K.Nakajima, Y.Ogawa, N.Suda, Y.Yokoyama, M.Hamabe, D.Izumiyama, S.Kuze, M.Okajima, Y.Tanaka, M.Yoshida, T.Inomoto, M.Ishitsuka, M.Ito, H.Matsumoto, R.Ohta, K.Shinoki, M.Martin, J. F.Nantais, C. M.Tanaka, H. A.Towstego, T.Akutsu, R.Hartz, M.Konaka, A.Prouse, N. W.Chen, S.Xu, B. D.Zhang, Y.Berkman, S.Tobayama, S.Connolly, K.Wilkes, R. J.Posiadala-Zezula, M.Hadley, D.Richards, B.Jamieson, B.Walker, J.Marti, Ll.Minamino, A.Pintaudi, G.Sano, S.Sasaki, R.
Source
JINST 17 P10029 (2022)
Subject
High Energy Physics - Experiment
Astrophysics - Instrumentation and Methods for Astrophysics
Physics - Instrumentation and Detectors
Language
Abstract
We present the development of neutron-tagging techniques in Super-Kamiokande IV using a neural network analysis. The detection efficiency of neutron capture on hydrogen is estimated to be 26%, with a mis-tag rate of 0.016 per neutrino event. The uncertainty of the tagging efficiency is estimated to be 9.0%. Measurement of the tagging efficiency with data from an Americium-Beryllium calibration agrees with this value within 10%. The tagging procedure was performed on 3,244.4 days of SK-IV atmospheric neutrino data, identifying 18,091 neutrons in 26,473 neutrino events. The fitted neutron capture lifetime was measured as 218 \pm 9 \mu s.