Accès ouvert déclaré
2020
article
Combined sensitivity to the neutrino mass ordering with JUNO, the IceCube Upgrade, and PINGU
M. G. Aartsen, M. Ackermann, J. Adams, J. A. Aguilar, M. Ahlers, M. Ahrens, C. Alispach, K. Andeen, T. Anderson, I. Ansseau, G. Anton, C. Argüelles, T. C. Arlen, J. Auffenberg, Spencer Axani, P. Backes, H. Bagherpour, X. Bai, Aswathi Balagopal, Anastasia Maria Barbano, I. Bartos, S. W. Barwick, B. Bastian, V. Baum, S. Baur, R. Bay, J. J. Beatty, Karl H. Becker, J. Becker Tjus, S. BenZvi, D. Berley, E. Bernardini, D. Z. Besson, G. Binder, D. Bindig, E. Blaufuss, Summer Blot, C. Böhm, M. Böhmer, S. Böser, O. Botner, J. Böttcher, Etienne Bourbeau, J. Bourbeau, F. Bradascio, J. Braun, S. Bron, J. Brostean-Kaiser, A. Burgman, J. Büscher, Raffaela Busse, T. Carver, E. Cheung, D. Chirkin, S. Choi, K. Clark, Lew Classen, A. Coleman, G. H. Collin, J. M. Conrad, Paul Coppin, P. Correa, D. F. Cowen, R. Cross, Pranav Dave, C. De Clercq, James DeLaunay, H.-P. Dembinski, K. Deoskar, S. De Ridder, P. Desiati, K. D. de Vries, G. de Wasseige, T. DeYoung, Alejandro A. Díaz, H. Dujmovic, M. Dunkman, M. A. DuVernois, Emily Dvorak, B. Eberhardt, T. Ehrhardt, P. Eller, R. Engel, John Evans, P. A. Evenson, S. Fahey, Kareem Ramadan Farrag, A. R. Fazely, J. Felde, K. Filimonov, C. Finley, D. B. Fox, A. Franckowiak, E. Friedman, Alexander Fritz, T. K. Gaisser, J. Gallagher, E. Ganster, S. Garrappa, Andreas Gärtner, L. Gerhardt, Roman August Gernhaeuser, K. Ghorbani, Theo Glauch, T. Glüsenkamp, A. Goldschmidt, J. G. González, D. Grant, Z. Griffith, S. Griswold, M. Günder, Mehmet Gündüz, Christian Haack, A. Hallgren, R. Halliday, L. Halve, F. Halzen, K. Hanson, J. Haugen, A. Haungs, D. Hebecker, D. Heereman, P. Heix, K. Helbing, R. Hellauer, Felix Henningsen, S. Hickford, J. Hignight, G. C. Hill, K. D. Hoffman, Benjamin D. Hoffmann, R. Hoffmann, Tobias Hoinka, B. Hokanson-Fasig, K. Holzapfel, K. Hoshina, F. Huang, M. E. Huber, Thomas Huber, T. Huege, K. Hultqvist, M. Hünnefeld, R. Hussain, S. In, N. Iovine, A. Ishihara, G. S. Japaridze, Minjin Jeong, K. Jero, B. J. P. Jones, F. Jonske, R. Joppe, O. Kalekin, D. Kang, Woosik Kang, A. Kappes, David Kappesser, T. Karg, M. Karl, A. Karle, T. Katori, U. Katz, M. Kauer, A. Keivani, J. L. Kelley, Ali Kheirandish, J. Kim, T. Kintscher, J. Kiryluk, T. Kittler, R. Koirala, H. Kolanoski, L. Köpke, Claudio Kopper, S. Kopper, D. J. Koskinen, M. Kowalski, C. B. Krauss, K. Krings, G. Krückl, N. Kulacz, N. Kurahashi, A. Kyriacou, J. L. Lanfranchi, M. J. Larson, Frederik Hermann Lauber, J. P. Lazar, A. Leszczyńska, M. Leuermann, Qinrui Liu, Elisa Lohfink, J. M. LoSecco, L. Lu, Francesco Lucarelli, J. Lünemann, W. Luszczak, Y. Lyu, J. Madsen, G. Maggi, K. B. M. Mahn, Y. Makino, P. Mallik, K. Mallot, Sarah Mancina, Shivesh Mandalia, I. C. Mariş, Szabolcs Márka, Z. Marka, R. Maruyama, K. Mase, R. Maunu, Frank McNally, K. Meagher, M. Medici, Andrés Medina, Maximilian Meier, S. Meighen-Berger, G. Merino, T. Meures, Jessie Micallef, D. Mockler, T. Montaruli, R. W. Moore, R. Morse, Marjon Moulai, P. Muth, R. Nagai, U. Naumann, G. Neer, H. Niederhausen, M. U. Nisa, Sarah Nowicki, D. R. Nygren, M. Oehler, A. Olivas, A. O’Murchadha, Erin O’Sullivan, T. Palczewski, H. Pandya, D. V. Pankova, L. Papp, N. Park, P. Peiffer, T. C. Petersen, Saskia Philippen, D. Pieloth, E. Pinat, J. L. Pinfold, A. Pizzuto, M. Plum, A. Porcelli, P. B. Price, G. T. Przybylski, C. Raab, A. Raissi, M. Rameez, L. Rauch, K. Rawlins, I. C. Rea, R. Reimann, B. Relethford, M. Renschler, G. Renzi, E. Resconi, W. Rhode, M. Richman, Michael Riegel, S. Robertson, Martin Rongen, C. Rott, T. Ruhe, D. Ryckbosch, I. Safa, Alexander Sandrock, J. Sandroos, P. Sandstrom, M. Santander, K. Satalecka, M. Schaufel, H. Schieler, P. Schlunder, T. Schmidt, A. Schneider, Judith Schneider, Frank Schröder, L. Schumacher, S. Sclafani, D. Seckel, S. Seunarine, M. H. Shaevitz, S. Shefali, M. Silva, R. Snihur, J. Soedingrekso, Dennis Soldin, S. Söldner‐Rembold, M. Song, G. M. Spiczak, C. Spiering, Juliana Stachurska, M. Stamatikos, T. Stanev, R. Stein, J. Stettner, A. Steuer, T. Stezelberger, R.G. Stokstad, A. Stößl, N. L. Strotjohann, T. Stürwald, Thomas Stuttard, G. Sullivan, I. Taboada, A. Taketa, Hiroyuki Tanaka, F. Tenholt, S. Ter–Antonyan, A. Terliuk, S. Tilav, K. Tollefson, L. Tomankova, Christoph Tönnis, S. Toscano, D. Tosi, Alexander Trettin, M. Tselengidou, C. F. Tung, A. Turcati, Roxanne Turcotte, Colin Turley, B. Ty, E. Unger, M. Usner, J. Vandenbroucke, W. Van Driessche, D. van Eijk, N. van Eijndhoven, J. van Santen, Darko Veberič, S. Verpoest, M. Vraeghe, C. Walck, A. Wallace, M. Wallraff, N. Wandkowsky, Timothyblake Watson, Ch. Weaver, Andreas Weindl, M. J. Weiss, J. Weldert, C. Wendt, Johannes Werthebach, B. J. Whelan, N. Whitehorn, K. Wiebe, C. H. Wiebusch, L. Wille, D. R. Williams, L. Wills, M. Wolf, J. Wood, T. R. Wood, K. Woschnagg, G. Wrede, Steven Wren, Dawei Xu, Xiaolin Xu, G. Yodh, S. Yoshida, T. Yuan, M. Zöcklein, T. J. C. Bezerra, Thilo Birkenfeld, D. Blum, M. Bongrand, A. Cabrera, Yaping Cheng, Wilfried Depnering, O. Dötterl, T. Enqvist, Heike Enzmann, C. Genster, M. Grassi, Alexandre Göttel, Paul Hackspacher, C. Hagner, Yu Han, Tobias Heinz, Philipp Kampmann, P. Kuusiniemi, T. Lachenmaier, Kai Loo, S. Lorenz, Б. Лубсандоржиев, L. Ludhova, Yury Malyshkin, David Meyhöfer, L. Miramonti, Axel Müller, Lothar Oberauer, O. Pilarczyk, Henning Rebber, J. Sawatzki, M. Schever, K. Schweizer, M. Settimo, C. Sirignano, Mikhail Smirnov, A. Stahl, Hans Steiger, Jochen Steinmann, Tobias Sterr, Matthias Raphael Stock, Alexander Studenikin, A. Tietzsch, W. H. Trzaska, B. Viaud, C. Volpe, W. Wang, B. S. Wonsak, M. Wurm, Christian Wysotzki, Xuefeng Ding, F. Yermia
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Résumé fourni par la source
The ordering of the neutrino mass eigenstates is one of the fundamental open questions in neutrino physics. While current-generation neutrino oscillation experiments are able to produce moderate indications on this ordering, upcoming experiments of the next generation aim to provide conclusive evidence. In this paper we study the combined performance of the two future multi-purpose neutrino oscillation experiments JUNO and the IceCube Upgrade, which employ two very distinct and complementary routes toward the neutrino mass ordering. The approach pursued by the 20 kt medium-baseline reactor neutrino experiment JUNO consists of a careful investigation of the energy spectrum of oscillated ¯ νe produced by ten nuclear reactor cores. The IceCube Upgrade, on the other hand, which consists of seven additional densely instrumented strings deployed in the center of IceCube DeepCore, will observe large numbers of atmospheric neutrinos that have undergone oscillations affected by Earth matter. In a joint fit with both approaches, tension occurs between their preferred mass-squared differences Δm 2 31=m 2 3−m 2 1 within the wrong mass ordering. In the case of JUNO and the IceCube Upgrade, this allows to exclude the wrong ordering at >5σ on a timescale of 3–7 years—even under circumstances that are unfavorable to the experiments’ individual sensitivities. For PINGU, a 26-string detector array designed as a potential low-energy extension to IceCube, the inverted ordering could be excluded within 1.5 years (3 years for the normal ordering) in a joint analysis.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
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Neutrino Physics ResearchAstrophysics and Cosmic PhenomenaParticle physics theoretical and experimental studies