Accès ouvert déclaré
2024
article
Development of a Data Overflow Protection System for Super-Kamiokande to Maximize Data from Nearby Supernovae
M. Mori, K. Abe, Y. Hayato, K. Hiraide, K. Hosokawa, K. Ieki, M. Ikeda, J. Kameda, Y. Kanemura, R. Kaneshima, Y. Kashiwagi, Y. Kataoka, S. Miki, S. Mine, M. Miura, S. Moriyama, Y. Nakano, M. Nakahata, S. Nakayama, Y. Noguchi, Ken‐ichi Okamoto, K. Satô, H. Sekiya, Hayato Shiba, K. Shimizu, M. Shiozawa, Y. Sonoda, Y. Suzuki, A. Takeda, Y. Takemoto, A. Takenaka, Hidekazu Tanaka, S. Watanabe, T. Yano, S. Han, T. Kajita, K. Okumura, T. Tashiro, T. Tomiya, Xiaogang Wang, Satoru Yoshida, G. D. Megias, P. Fernández, L. Labarga, N. Ospina, B. Zaldivar, B. W. Pointon, E. Kearns, J. L. Raaf, L. Wan, T. Wester, J. Bian, N. J. Griskevich, S. Locke, M. Smy, H. W. Sobel, Volodymyr Takhistov, A. Yankelevich, J. Hill, M. C. Jang, S. H. Lee, D H Moon, R G Park, B. Bodur, K. Scholberg, C. W. Walter, A Beauchêne, O. Drapier, A. Giampaolo, Th. A. Mueller, A. D. Santos, Pascal Paganini, B Quilain, R. Rogly, T. Ishizuka, T. Nakamura, Jinhyeok Jang, J G Learned, K. Choi, N. Iovine, S. Cao, L. H. V. Anthony, D. Martin, M. Scott, A. A. Sztuc, Y. Uchida, V. Berardi, M.G. Catanesi, E. Radicioni, N. F. Calabria, A. Langella, L. N. Machado, G. De Rosa, G Collazuol, F. Iacob, M. Lamoureux, M. Mattiazzi, L. Ludovici, M. Gonin, Lorenzo Périssé, G. Pronost, C. Fujisawa, Y. Maekawa, Y Nishimura, Ryuji Okazaki, R. Akutsu, M. Friend, T. Hasegawa, T. Ishida, Y. Obayashi, M. Jakkapu, T. Matsubara, T. Nakadaira, K. Nakamura, Y. Oyama, K Sakashita, T Sekiguchi, T. Tsukamoto, N. A. Bhuiyan, G. T. Burton, R. Edwards, F. Di Lodovico, J. Gao, A. Goldsack, T. Katori, J. Migenda, R. M. Ramsden, Z. Xie, S. Zsoldos, Y. Kotsar, H. Ozaki, Y. Suzuki, Y. Takagi, Y. Takeuchi, Hao Zhong, C. Bronner, Jiwen Feng, Jun Hu, Z. Hu, M Kawaune, T. Kikawa, F LiCheng, T. Nakaya, R. A. Wendell, S. J. Jenkins, N McCauley, P. Mehta, A. Tarant, Y. Fukuda, Y. Itow, H. Menjo, K. Ninomiya, Y. Yoshioka, J. Łagoda, S. M. Lakshmi, Mrinal Kanti Mandal, P Mijakowski, Y S Prabhu, J. Zalipska, Meng Jia, Jack J. Jiang, C. K. Jung, M. J. Wilking, C. Yanagisawa, Minoru Harada, Y. Hino, H Ishino, H. Kitagawa, Y. Koshio, S. Sakai, Tomofumi Tada, T. Tano, G. Barr, Daniel L. Barrow, L. Cook, S. Samani, A. Holin, F. Nova, S. Jung, B. S. Yang, Junyou Yang, J. Yoo, J. E. P. Fannon, L. Kneale, M. Malek, J. McElwee, M. D. Thiesse, L.F. Thompson, Stephen Wilson, H. Okazawa, S. B. Kim, E. Kwon, J. W. Seo, I. Yu, A. K. Ichikawa, K Nakamura, S Tairafune, K. Nishijima, A. Eguchi, K Nakagiri, Y. Nakajima, S. Shima, N. Taniuchi, Eiji Watanabe, M. Yokoyama, P. de Perio, S. Fujita, K. Martens, K. M. Tsui, M. R. Vagins, Clàudìa Valls, J. Xia, M. Kuze, S. Izumiyama, M. Ishitsuka, Hiroshi Ito, T. Kinoshita, R. Matsumoto, Y. Ommura, N Shigeta, M. Shinoki, Tatsuo Suganuma, K. Yamauchi, Tsukasa Yoshida, H. Tanaka, T. Towstego, R Gaur, V. Gousy-Leblanc, M Hartz, A. Konaka, X. Li, N. W. Prouse, S. Chen, Benda Xu, B. Zhang, M. Posiadała-Zezula, S. B. Boyd, D. Hadley, M. Nicholson, M. O’Flaherty, B Richards, B Jamieson, S. Amanai, Ll. Marti, A. Minamino, G. Pintaudi, Shinichi Sano, S. Suzuki, Keiichi Wada
3Citations signalées — pas une note de qualité
68Institutions déclarées
12Pays d’affiliation déclarés
Résumé fourni par la source
Abstract Neutrinos from very nearby supernovae, such as Betelgeuse, are expected to generate more than ten million events over 10 s in Super-Kamokande (SK). At such large event rates, the buffers of the SK analog-to-digital conversion board (QBEE) will overflow, causing random loss of data that are critical for understanding the dynamics of the supernova explosion mechanism. In order to solve this problem, two new data-acquisition (DAQ) modules were developed to aid in the observation of very nearby supernovae. The first of these, the SN module, is designed to save only the number of hit photomultiplier tubes during a supernova burst and the second, the Veto module, prescales the high-rate neutrino events to prevent the QBEE from overflowing based on information from the SN module. In the event of a very nearby supernova, these modules allow SK to reconstruct the time evolution of the neutrino event rate from beginning to end using both QBEE and SN module data. This paper presents the development and testing of these modules together with an analysis of supernova-like data generated with a flashing laser diode. We demonstrate that the Veto module successfully prevents DAQ overflows for Betelgeuse-like supernovae as well as the long-term stability of the new modules. During normal running the Veto module is found to issue DAQ vetos a few times per month resulting in a total dead-time less than 1 ms, and does not influence ordinary operations. Additionally, using simulation data we find that supernovae closer than 800 pc will trigger the Veto module, resulting in a prescaling of the observed neutrino data.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
Contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- Development of a Data Overflow Protection System for Super-Kamiokande to Maximize Data from Nearby Supernovae
- Date Crossref
- 22/08/2024
- Éditeur
- Oxford University Press (OUP)
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude et ne compte pas comme une seconde source scientifique indépendante.
Institutions déclarées
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Sujets associés
Neutrino Physics ResearchAstrophysics and Cosmic PhenomenaParticle Detector Development and Performance