W. D. Melbourne, Owen Stanley, P. Urquijo, M. J. Zurowski
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引用次数: 1
摘要
SABRE (Sodium iodide with Active Background REjection)是一个基于NaI(Tl)的暗物质直接探测实验,位于美国Stawell地下物理实验室(SUPL)。理论物理。[j].光学精密工程,2016,35(5):557 - 557。它被设计用来探测WIMP反冲的年度调制,作为长期存在的DAMA/LIBRA调制信号的独立复制。SABRE South在NaI(Tl)晶体探测器中具有1 keV的低能量阈值和低实验背景。这需要精确地描述光电倍增管的特性,以了解它们在低阈值时的灵敏度及其对背景的贡献。我们报道了为晶体探测器光电倍增管开发的光电倍增管特性测试平台,包括对单光子响应、传输时间和暗噪声的研究。一个特别的重点是估计对实验背景的贡献,因为它在低能量下占主导地位,并且无法使用传统的MC模拟建模。
Photomultiplier characterisation and its impact on background for SABRE South
SABRE (Sodium iodide with Active Background REjection) South is a NaI(Tl) based dark matter direct detection experiment located at the Stawell Underground Physics Laboratory (SUPL) [J. Phys. Conf. Ser. 2156, 012064 (2021), arXiv:2205.13849]. It is designed to detect an annual modulation of WIMP recoils as an independent replication of the long-standing DAMA/LIBRA modulation signal. SABRE South will have a low energy threshold of 1 keV in the NaI(Tl) crystal detector and a low experimental background. This requires precise characterisation of the photomultipliers used to understand both their sensitivity at low thresholds and their contribution to the background. We report on the photomultiplier characterisation test bench developed for the crystal detector photomultipliers including studies of the single photon response, transit time, and dark noise. A specific focus is on estimating the contribution to the experimental background of coincident photomultiplier noise due to its predominance at low energy and inability to be modelled using traditional MC simulation.