{"paper":{"title":"JUNO Conceptual Design Report","license":"http://arxiv.org/licenses/nonexclusive-distrib/1.0/","headline":"","cross_cats":["hep-ex"],"primary_cat":"physics.ins-det","authors_text":"A. Brigatti, A. Cabrera, A. Cammi, A. Chukanov, A. Formozov, A. Garfagnini, A. Ioannisian, A. Krasnoperov, A. Kruth, A. Meregaglia, A. Olshevskiy, A. Paoloni, A. Re, A. Romani, A. Rybnikov, A. Sadovsky, A. Selyunin, A. Stahl, A. Tietzsch, B. Clerbaux, B. Hu, B. Kan, B. Lubsandorzhiev, B. Ren, B. Ricci, B. Roskovec, B. Wonsak, B. Yan, B. Yu, C. Fang, C. Genster, C. Grewing, C. Hagner, C. Jollet, C. Li, C. Lu, C. Sirignano, C. Volpe, C. Wang, C. Wiebusch, C. Wu, C. Yang, C. Yu, C. Zhang, D. Bick, D. Cao, D. Chiesa, D. D'Angelo, D. Dornic, D. Fan, D. Fedoseev, D. Hellgartner, D. Hong, D. Ioannisyan, D. Jiang, D. Korablev, D. Mayilyan, D. Naumov, D. Taichenachev, D. Xia, E. Baussan, E. Doroshkevich, E. Meroni, E. Naumova, E. Previtali, E. Yanovich, F. An, F. Giuliani, F. Lenz, F. Li, F. Lu, F. Luo, F. Mantovani, F. Ortica, F. Qi, F. Yermia, F. Zhang, G. An, G. Baccolo, G. Cao, G. Fiorentini, G. Gaudiot, G. Gong, G. Lin, G. Liu, G. Meng, G. Ranucci, G. Salamanna, G. Shi, G. Sun, G. Wang, G. Yu, G. Zhang, G. Zhou, H. Cai, H. de Kerret, H. Gan, H. Gong, H. Huang, H. Liang, H. Liu, H. Lu, H. Nunokawa, H. Pan, H. Peng, H. Qiao, H. Wang, H. Yang, H. Zhang, H. Zheng, H. Zhu, H. Zhuang, I. Lippi, I. Nemchenok, I. Tkachev, J. Busto, J. Cao, J. Chang, J. Fang, J. Hao, J. Hu, J. Li, J. Liang, J. Liu, J. Lu, J. Min, J.P. Ochoa-Ricoux, J. Ren, J. Sawatzki, J. Schuler, J. Shi, J. Steinmann, J. Tang, J. Wurtz, J. Xia, J. Xu, J. Zhang, J. Zhao, J. Zhou, J. Zou, K. Jen, K. Zhang, K. Zhu, L. Bezrukov, L. Favart, L. Huo, L. Kang, L. Lei, L. Ludhova, L. Miramonti, L. Oberauer, L. Stanco, L. Votano, L. Wen, L. Xu, L. Yang, L. Zhan, L. Zhou, L. Zong, M.A. D\\'iaz, M. Baldoncini, M. Bellato, M. Buizza Avanzini, M. Chen, M. Clemenza, M. Dolgareva, M. Dracos, M. Giammarchi, M. G\\\"oger-Neff, M. Gonchar, M. Gonin, M. Grassi, M. Gu, M. Guan, M. He, M. Jeitler, M. Kaiser, M. Karagounis, M. Licciardi, M. Mezzetto, M. Montuschi, M. Nastasi, M. Qi, M. Robens, M. Sisti, M. Soiron, M. Wang, M. Weifels, M. Wurm, M. Xiao, M. Yang, M. Ye, M. Zanetti, M. Zhao, M. Zheng, N. Anfimov, N. Kazarian, N. Li, N. Morozov, N. Parkalian, N. Pelliccia, N. Zhou, O. Drapier, O. Smirnov, P. Chen, P. Hackspacher, P. Kuusiniemi, P. Lombardi, P. Muralidharan, P. Poussot, P. Saggese, P. Zeng, P. Zhang, Q. An, Q. Chen, Q. Liu, Q. Ma, Q. Wu, Q. Zhang, R. Brugnera, R. Ford, R. Gaigher, R. Han, R. Lei, R. Leitner, R. Wang, R. Zhou, S. Blyth, S. Boarin, S. Chen, S.C. Wong, S. Dmitrievsky, S. Dusini, S. Hou, S. Hu, S. Jetter, S. Jian, S. Kettell, S. Krokhaleva, S. Li, S. Lin, S. Liu, S. Lorenz, S. Lubsandorzhiev, S. Luo, S. Ma, S. Mari, S. Parmeggiano, S. Pozzi, S. Prummer, S. Qian, S. van Waasen, S. Wang, S. Wipperfurth, S. Zeng, S. Zhou, T. Adam, T. Brugi\\`ere, T. Enqvist, T. Hu, T. Lachenmaier, T. Li, T. Lin, T. Mueller, T. Rezinko, T. Zeng, T. Zhang, T. Zhao, U. Yegin, V. Antonelli, V. Gromov, V. Guarino, V. Lyashuk, V. Pec, V. Sinev, V. Strati, V. Vorobel, W. Guo, W.H. Trzaska, W. Hu, W. Huo, W. Li, W. McDonough, W. Wang, W. Wei, W. Zhong, W. Zhou, X. Cai, X. Chen, X. Ding, X. Fang, X. Guo, X. Huang, X. Ji, X. Jiang, X. Lei, X. Li, X. Ma, X. Qian, X. Ruan, X. Sun, X. Yan, X. Ye, X. Zhang, X. Zheng, X. Zhou, Y. Chang, Y. Chen, Y. Cheng, Y. Ding, Y. Gornushkin, Y. Guo, Y. Heng, Y. Hsiung, Y. Li, Y. Lin, Y. Liu, Y. Long, Y. Malyshkin, Y. Mao, Y. Shi, Y. Sun, Y. Tung, Y. Wang, Y. Wei, Y. Wen, Y. Xi, Y. Xie, Y. Xu, Y. Yang, Y. Yao, Y. Yuan, Y. Zhang, Y. Zhao, Y. Zheng, Y. Zhou, Z. Deng, Z. Djurcic, Z. Han, Z. Krumshteyn, Z. Li, Z. Lv, Z. Ning, Z. Qin, Z. Wang, Z. Wu, Z. You, Z. Yu, Z. Yuan, Z. Zhang","submitted_at":"2015-08-28T10:56:54Z","abstract_excerpt":"The Jiangmen Underground Neutrino Observatory (JUNO) is proposed to determine the neutrino mass hierarchy using an underground liquid scintillator detector. It is located 53 km away from both Yangjiang and Taishan Nuclear Power Plants in Guangdong, China. The experimental hall, spanning more than 50 meters, is under a granite mountain of over 700 m overburden. Within six years of running, the detection of reactor antineutrinos can resolve the neutrino mass hierarchy at a confidence level of 3-4$\\sigma$, and determine neutrino oscillation parameters $\\sin^2\\theta_{12}$, $\\Delta m^2_{21}$, and $"},"claims":{"count":0,"items":[],"snapshot_sha256":"258153158e38e3291e3d48162225fcdb2d5a3ed65a07baac614ab91432fd4f57"},"source":{"id":"1508.07166","kind":"arxiv","version":2},"verdict":{"id":null,"model_set":{},"created_at":null,"strongest_claim":"","one_line_summary":"","pipeline_version":null,"weakest_assumption":"","pith_extraction_headline":""},"references":{"count":0,"sample":[],"resolved_work":0,"snapshot_sha256":"258153158e38e3291e3d48162225fcdb2d5a3ed65a07baac614ab91432fd4f57","internal_anchors":0},"formal_canon":{"evidence_count":0,"snapshot_sha256":"258153158e38e3291e3d48162225fcdb2d5a3ed65a07baac614ab91432fd4f57"},"author_claims":{"count":0,"strong_count":0,"snapshot_sha256":"258153158e38e3291e3d48162225fcdb2d5a3ed65a07baac614ab91432fd4f57"},"builder_version":"pith-number-builder-2026-05-17-v1"}