多像素硅漂移探测器中的电荷收集和信号定时研究

Christian Forstner, Korbinian Urban, Marco Carminati, Frank Edzards, Carlo Fiorini, Manuel Lebert, Peter Lechner, Daniel Siegmann, Daniela Spreng, Susanne Mertens
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引用次数: 0

摘要

不育中微子是粒子物理学标准模型的最小扩展,如果其质量在keV范围内,则有希望成为暗物质的候选者。卡尔斯鲁厄氚中微子实验(KATRIN)配备了一个高水平的多像素硅漂移探测器阵列--TRISTAN探测器,将能够通过研究氚$\beta$衰变的动力学来搜寻这些keV尺度的不育中微子。这项测量将在中微子质量测量活动完成之后进行。为了高灵敏度地探测小中微子信号,需要深刻了解探测器的响应。在这项工作中,我们报告了利用激光系统对一个 7 像素 TRISTAN 原型探测器进行的表征。我们介绍了利用聚焦激光束对探测器表面进行高分辨率扫描所获得的实验结果,并展示了探测器中产生的电荷收集和信号时间与探测器几何形状之间的关系。实验数据与模拟数据的比较显示两者之间具有良好的一致性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigations of Charge Collection and Signal Timing in a multi-pixel Silicon Drift Detector
Sterile neutrinos are a minimal extension of the Standard Model of particle physics and a promising candidate for dark matter if their mass is in the keV-range. The Karlsruhe Tritium Neutrino experiment (KATRIN), equipped with a novel multi-pixel silicon drift detector array, the TRISTAN detector, will be capable of searching for these keV-scale sterile neutrinos by investigating the kinematics of the tritium $\beta$-decay. This measurement will be performed after the completion of the neutrino mass measurement campaign. To detect a sterile neutrino signal with a high sensitivity, a profound understanding of the detector response is required. In this work, we report on the characterization of a 7-pixel TRISTAN prototype detector with a laser system. We present the experimental results obtained in high-resolution scans of the detector surface with a focused laser beam and demonstrate how the charge collection and the timing of the signals generated in the detector is related to the detector geometry. A comparison of the experimental data with simulations shows a good agreement.
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