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New methods and simulations for cosmogenic induced spallation removal in Super-Kamiokande-IV

  • S. Locke
  • , A. Coffani
  • , K. Abe
  • , C. Bronner
  • , Y. Hayato
  • , M. Ikeda
  • , S. Imaizumi
  • , H. Ito
  • , J. Kameda
  • , Y. Kataoka
  • , M. Miura
  • , S. Moriyama
  • , Y. Nagao
  • , M. Nakahata
  • , Y. Nakajima
  • , S. Nakayama
  • , T. Okada
  • , K. Okamoto
  • , A. Orii
  • , G. Pronost
  • H. Sekiya, M. Shiozawa, Y. Sonoda, Y. Suzuki, A. Takeda, Y. Takemoto, A. Takenaka, H. Tanaka, T. Yano, K. Hirade, Y. Kanemura, S. Miki, S. Watabe, S. Han, T. Kajita, K. Okumura, T. Tashiro, J. Xia, X. Wang, G. D. Megias, D. Bravo-Berguño, L. Labarga, Ll Marti, B. Zaldivar, B. W. Pointon, F. D.M. Blaszczyk, E. Kearns, J. L. Raaf, J. L. Stone, L. Wan, T. Wester, J. Bian, N. J. Griskevich, W. R. Kropp, S. Mine, M. B. Smy, H. W. Sobel, V. Takhistov, P. Weatherly, A. Yankelevich, J. Hill, J. Y. Kim, I. T. Lim, R. G. Park, B. Bodur, K. Scholberg, C. W. Walter, L. Bernard, O. Drapier, S. El Hedri, A. Giampaolo, M. Gonin, Th A. Mueller, P. Paganini, B. Quilain, A. D. Santos, T. Ishizuka, T. Nakamura, J. S. Jang, J. G. Learned, L. H.V. Anthony, A. A. Sztuc, Y. Uchida, D. Martin, M. Scott, V. Berardi, M. G. Catanesi, E. Radicioni, N. F. Calabria, L. N. Machado, G. De Rosa, G. Collazuol, F. Iacob, M. Lamoureux, N. Ospina, M. Mattiazzi, L. Ludovici, Y. Nishimura, Y. Maewaka, S. Cao, M. Friend, T. Hasegawa, T. Ishida, T. Kobayashi, M. Jakkapu, T. Matsubara, T. Nakadaira, K. Nakamura, Y. Oyama, K. Sakashita, T. Sekiguchi, T. Tsukamoto, Y. Nakano, T. Shiozawa, A. T. Suzuki, Y. Takeuchi, S. Yamamoto, Y. Kotsar, H. Ozaki, A. Ali, Y. Ashida, J. Feng, S. Hirota, A. K. Ichikawa, T. Kikawa, M. Mori, T. Nakaya, R. A. Wendell, K. Yasutome, P. Fernandez, N. McCauley, P. Mehta, K. M. Tsui, Y. Fukuda, Y. Itow, H. Menjo, T. Niwa, K. Sato, M. Tsukada, P. Mijakowski, J. Lagoda, S. M. Lakshmi, J. Zalipska, C. K. Jung, C. Vilela, M. J. Wilking, C. Yanagisawa, J. Jiang, K. Hagiwara, M. Harada, T. Horai, H. Ishino, S. Ito, Y. Koshio, W. Ma, N. Piplani, S. Sakai, H. Kitagawa, G. Barr, D. Barrow, L. Cook, A. Goldsack, S. Samani, D. Wark, F. Nova, T. Boschi, F. Di Lodovico, M. Taani, S. Zsoldos, J. Gao, J. Migenda, J. Y. Yang, S. J. Jenkins, M. Malek, J. M. McElwee, O. Stone, M. D. Thiesse, L. F. Thompson, H. Okazawa, K. Nakamura, S. B. Kim, I. Yu, J. W. Seo, K. Nishijima, M. Koshiba, K. Iwamoto, N. Ogawa, M. Yokoyama, K. Martens, M. R. Vagins, K. Nakagiri, M. Kuze, S. Izumiyama, T. Yoshida, M. Inomoto, M. Ishitsuka, R. Matsumoto, K. Ohta, M. Shinoki, T. Suganuma, T. Kinoshita, J. F. Martin, H. A. Tanaka, T. Towstego, R. Akutsu, M. Hartz, A. Konaka, P. De Perio, N. W. Prouse, S. Chen, B. D. Xu, Y. Zhang, M. Posiadala-Zezula, B. Richards, B. Jamieson, J. Walker, A. Minamino, K. Okamoto, G. Pintaudi, R. Sasaki
  • Department of Physics and Astronomy
  • Long Beach VA and University of California
  • Ip Paris
  • Institute for Cosmic Ray Research
  • University of Tokyo
  • Research Center for Cosmic Neutrinos
  • Facultad de Ciencias
  • Universidad Autónoma de Madrid
  • Department of Physics
  • British Columbia Institute of Technology
  • TRIUMF
  • Boston University
  • Department of Physics
  • California State University, Dominguez Hills
  • Chonnam National University
  • Department of Physics
  • Duke University
  • Junior College
  • Fukuoka Institute of Technology
  • Department of Physics
  • Gifu University
  • Gwangju Institute of Science and Technology
  • Department of Physics and Astronomy
  • University of Hawaii
  • Imperial College London
  • Politecnico di Bari
  • Dipartimento di Fisica
  • University of Naples Federico II
  • Dipartimento di Fisica
  • University of Padova
  • University of Rome
  • Keio University
  • High Energy Accelerator Research Organization (KEK)
  • Department of Physics
  • Kobe University
  • Department of Physics
  • Kyoto University
  • University of Liverpool
  • Department of Physics
  • Miyagi University of Education
  • Institute for Space-Earth Environmental Research
  • Nagoya University
  • National Centre for Nuclear Research (NCBJ)
  • Department of Physics and Astronomy
  • Stony Brook University
  • Department of Science
  • York College/The City University of New York
  • Department of Physics
  • Okayama University
  • University of Oxford
  • CCLRC Rutherford Appleton Laboratory
  • King's College London
  • Department of Physics
  • Seoul National University
  • Department of Physics and Astronomy
  • The University of Sheffield
  • Department of Informatics in Social Welfare
  • Shizuoka University of Welfare
  • Tohoku University
  • Department of Physics
  • Sungkyunkwan University
  • Department of Physics
  • Tokai University
  • Department of Physics
  • Department of Physics
  • Tokyo Institute of Technology
  • Department of Physics
  • Tokyo University of Science
  • University of Toronto
  • Tsinghua University
  • University of Warsaw
  • University of Warwick
  • Department of Physics
  • University of Winnipeg
  • Department of Physics
  • Yokohama National University

Research output: Contribution to journalArticlepeer-review

8 Citations (Scopus)

Abstract

Radioactivity induced by cosmic muon spallation is a dominant source of backgrounds for O(10 MeV) neutrino interactions in water Cherenkov detectors. In particular, it is crucial to reduce backgrounds to measure the solar neutrino spectrum and find neutrino interactions from distant supernovae. In this paper we introduce new techniques to locate muon-induced hadronic showers and efficiently reject spallation backgrounds. Applying these techniques to the solar neutrino analysis with an exposure of 2790×22.5 kton·day increases the signal efficiency by 12.6%, approximately corresponding to an additional year of detector running. Furthermore, we present the first spallation simulation at Super-Kamiokande, where we model hadronic interactions using fluka. The agreement between the isotope yields and shower pattern in this simulation and in the data gives confidence in the accuracy of this simulation, and thus opens the door to use it to optimize muon spallation removal in new data with gadolinium-enhanced neutron capture detection.

Original languageEnglish
Article number032003
JournalPhysical Review D
Issue number3
DOIs
Publication statusPublished - 1 Aug 2024

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