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Conceptual design and simulation of a water Cherenkov muon veto for the XENON1T experiment

机译:XENON1T实验用水Cherenkov介子否决权的概念设计和仿真

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摘要

XENON is a dark matter direct detection project, consisting of a time projection chamber (TPC) filled with liquid xenon as detection medium. The construction of the next generation detector, XENON1T, is presently taking place at the Laboratori Nazionali del Gran Sasso (LNGS) in Italy. It aims at a sensitivity to spin-independent cross sections of 2 centerdot 10-47 c 2 for WIMP masses around 50 GeV2, which requires a background reduction by two orders of magnitude compared to XENON100, the current generation detector. An active system that is able to tag muons and muon-induced backgrounds is critical for this goal. A water Cherenkov detector of ~ 10 m height and diameter has been therefore developed, equipped with 8 inch photomultipliers and cladded by a reflective foil. We present the design and optimization study for this detector, which has been carried out with a series of Monte Carlo simulations. The muon veto will reach very high detection efficiencies for muons (>99.5%) and showers of secondary particles from muon interactions in the rock (>70%). Similar efficiencies will be obtained for XENONnT, the upgrade of XENON1T, which will later improve the WIMP sensitivity by another order of magnitude. With the Cherenkov water shield studied here, the background from muon-induced neutrons in XENON1T is negligible.
机译:XENON是一种暗物质直接检测项目,由一个充满液体氙作为检测介质的定时投射室(TPC)组成。下一代探测器XENON1T的建造目前在意大利的Labionatori Nazionali del Gran Sasso(LNGS)进行。它旨在对50 GeV2左右的WIMP质量具有2个中心点10-47 c 2的自旋无关截面的灵敏度,与当前检测器XENON100相比,这要求背景降低两个数量级。能够标记介子和介子诱导的背景的主动系统对于此目标至关重要。因此,已经开发出了高度和直径约为10 m的水切伦科夫探测器,该探测器配备了8英寸的光电倍增管,并覆盖有反射箔。我们介绍了此探测器的设计和优化研究,该研究已通过一系列蒙特卡洛模拟进行。介子否决权对介子(> 99.5%)和岩石中介子相互作用产生的次级粒子簇(> 70%)具有很高的检测效率。 XENONnT(XENON1T的升级版)将获得类似的效率,这将在以后将WIMP灵敏度提高另一个数量级。通过此处研究的契伦科夫水盾,XENON1T中由μ子引起的中子的背景可以忽略不计。

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