학술논문

The XENONnT Dark Matter Experiment
Document Type
Working Paper
Author
XENON CollaborationAprile, E.Aalbers, J.Abe, K.Maouloud, S. AhmedAlthueser, L.Andrieu, B.Angelino, E.Angevaare, J. R.Antochi, V. C.Martin, D. AntónArneodo, F.Balata, M.Baudis, L.Baxter, A. L.Bazyk, M.Bellagamba, L.Biondi, R.Bismark, A.Brookes, E. J.Brown, A.Bruenner, S.Bruno, G.Budnik, R.Bui, T. K.Cai, C.Cardoso, J. M. R.Cassese, F.Chiarini, A.Cichon, D.Chavez, A. P. CimentalColijn, A. P.Conrad, J.Corrieri, R.Cuenca-García, J. J.Cussonneau, J. P.Dadoun, O.D'Andrea, V.Decowski, M. P.De Fazio, B.Di Gangi, P.Diglio, S.Disdier, J. M.Douillet, D.Eitel, K.Elykov, A.Farrell, S.Ferella, A. D.Ferrari, C.Fischer, H.Flierman, M.Form, S.Front, D.Fulgione, W.Fuselli, C.Gaemers, P.Gaior, R.Rosso, A. GalloGalloway, M.Gao, F.Gardner, R.Garroum, N.Glade-Beucke, R.Grandi, L.Grigat, J.Guan, H.Guerzoni, M.Guida, M.Hammann, R.Higuera, A.Hils, C.Hoetzsch, L.Hood, N. F.Howlett, J.Huhmann, C.Iacovacci, M.Iaquaniello, G.Iven, L.Itow, Y.Jakob, J.Joerg, F.Joy, A.Kara, M.Kavrigin, P.Kazama, S.Kobayashi, M.Koltman, G.Kopec, A.Kuger, F.Landsman, H.Lang, R. F.Levinson, L.Li, I.Li, S.Liang, S.Lindemann, S.Lindner, M.Liu, K.Loizeau, J.Lombardi, F.Long, J.Lopes, J. A. M.Ma, Y.Macolino, C.Mahlstedt, J.Mancuso, A.Manenti, L.Marignetti, F.Undagoitia, T. MarrodánMartella, P.Martens, K.Masbou, J.Masson, D.Masson, E.Mastroianni, S.Mele, E.Messina, M.Michinelli, R.Miuchi, K.Molinario, A.Moriyama, S.Morå, K.Mosbacher, Y.Murra, M.Müller, J.Ni, K.Nisi, S.Oberlack, U.Orlandi, D.Othegraven, R.Paetsch, B.Palacio, J.Parlati, S.Paschos, P.Pellegrini, Q.Peres, R.Peters, C.Pienaar, J.Pierre, M.Plante, G.Pollmann, T. R.Qi, J.Qin, J.García, D. RamírezRynge, M.Shi, J.Singh, R.Sanchez, L.Santos, J. M. F. dosSarnoff, I.Sartorelli, G.Schreiner, J.Schulte, D.Schulte, P.Eißing, H. SchulzeSchumann, M.Lavina, L. ScottoSelvi, M.Semeria, F.Shagin, P.Shi, S.Shockley, E.Silva, M.Simgen, H.Stephen, J.Stern, M.Stillwell, B. K.Takeda, A.Tan, P. -L.Tatananni, D.Terliuk, A.Thers, D.Toschi, F.Trinchero, G.Tunnell, C.Tönnies, F.Valerius, K.Volta, G.Weinheimer, C.Weiss, M.Wenz, D.Westermann, J.Wittweg, C.Wolf, T.Wu, V. H. S.Xing, Y.Xu, D.Xu, Z.Yamashita, M.Yang, L.Ye, J.Yuan, L.Zavattini, G.Zhong, M.Zhu, T.
Source
Subject
Physics - Instrumentation and Detectors
Astrophysics - Instrumentation and Methods for Astrophysics
High Energy Physics - Experiment
Language
Abstract
The multi-staged XENON program at INFN Laboratori Nazionali del Gran Sasso aims to detect dark matter with two-phase liquid xenon time projection chambers of increasing size and sensitivity. The XENONnT experiment is the latest detector in the program, planned to be an upgrade of its predecessor XENON1T. It features an active target of 5.9 tonnes of cryogenic liquid xenon (8.5 tonnes total mass in cryostat). The experiment is expected to extend the sensitivity to WIMP dark matter by more than an order of magnitude compared to XENON1T, thanks to the larger active mass and the significantly reduced background, improved by novel systems such as a radon removal plant and a neutron veto. This article describes the XENONnT experiment and its sub-systems in detail and reports on the detector performance during the first science run.
Comment: 32 pages, 19 figures