Background suppression in the COSINUS experiment: Active muon veto and radiopure materials selection

M. Stukel, G. Angloher, Mukund Raghunath Bharadwaj, I. Dafinei, N. Di Marco, L. Einfalt, F. Ferroni, S. Fichtinger, A. Filipponi, T. Frank, M. Friedl, A. Fuss, Z. Ge, M. Heikinheimo, K. Huitu, M. Kellermann, R. Maji, M. Mancuso, L. Pagnanini, F. Petricca, S. Pirrò, F. Pröbst, G. Profeta, A. Puiu, F. Reindl, K. Schäffner, J. Schieck, D. Schmiedmayer, C. Schwertner, M. Stahlberg, A. Stendahl, F. Wagner, S. Yue, V. Zema, Y. Zhu
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Abstract

For over twenty-five years the DAMA/LIBRA experiment has reported an annual modulation signal that is consistent with a dark matter explanation. This signal is, currently, in tension with the null results observed by other searches that utilize different target detectors. The COSINUS experiment will perform a model-independent cross-check of the DAMA/LIBRA result by using the same target material, NaI crystals, operated as scintillating calorimeters. By measuring both temperature and light the NaI crystals in COSINUS will be able to distinguish between electron and nuclear recoils on an event-by-event basis. However, background events induced by cosmic-rays, environmental radioactivity or the intrinsic contamination of the materials used in the crystal, shielding and infrastructure can pose an issue to any analysis and must be fully understood. We report on the status of the development of the simulation for an active water Cherenkov muon veto, as well as the results of the beginning radiogenic material screening.
COSINUS实验中的背景抑制:主动μ子否决和放射性照相材料的选择
在超过25年的时间里,DAMA/LIBRA实验报告了一个与暗物质解释一致的年度调制信号。目前,该信号与使用不同目标检测器的其他搜索所观察到的无效结果相矛盾。COSINUS实验将通过使用相同的目标材料NaI晶体作为闪烁量热计,对DAMA/LIBRA结果进行模型独立的交叉检查。通过测量温度和光线,COSINUS中的NaI晶体将能够在逐个事件的基础上区分电子和核反冲。然而,由宇宙射线、环境放射性或晶体、屏蔽和基础设施中使用的材料的固有污染引起的背景事件可能对任何分析构成问题,必须充分了解。我们报告了活水切伦科夫介子否决权模拟的发展现状,以及开始放射性物质筛选的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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