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Neutron Detection with Plastic Scintillators Coupled to Solid-state Photomultiplier Detectors

机译:塑料闪烁体与固态光电倍增管探测器耦合的中子探测

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The recent reduction of dark current in Silicon Solid-state photomultipliers (SiSSPMs) makes them an attractive alternative to conventional photomultiplier tubes (PMTs) for scintillation detection applications. Nuclear Physics experiments often require large detector volumes made using scintillation materials, which require sensitive photodetectors, such as a PMTs. PMTs add to the size, fragility, and high-voltage requirements as well as distance requirements for experiments using magnetic fields. This work compares RMD's latest detector modules, denoted as the "year 2 prototype", of plastic scintillators that discriminate gamma and high-energy particle events from neutron events using pulse shape discrimination (PSD) coupled to a SiSSPM to the following two detector modules: a similar "year 1 prototype" and a scintillator coupled to a PMT module. It characterizes the noise floor, relative signal-to-noise ratio (SNR), the timing performance, the PSD figure-of-merit (FOM) and the neutron detection efficiency of RMD's detectors. This work also evaluates the scaling of SiSSPM detector modules to accommodate the volumes needed for many Nuclear Physics experiments. The Si SSPM detector module provides a clear advantage in Nuclear Physics experiments that require the following attributes: discrimination of neutron and gamma-ray events, operation in or near strong magnetic fields, and segmentation of the detector.
机译:硅固态光电倍增管(SiSSPM)中暗电流的最新减少使它们成为闪烁检测应用中传统光电倍增管(PMT)的有吸引力的替代品。核物理实验通常需要使用闪烁材料制成的大体积探测器,这需要灵敏的光电探测器(例如PMT)。 PMT增加了尺寸,易碎性,高压要求以及使用磁场进行实验的距离要求。这项工作将RMD最新的探测器模块(称为“ 2年原型”)与塑料闪烁体进行了比较,该塑料闪烁体使用与SiSSPM耦合的脉冲形状鉴别(PSD)来区分伽马和高能粒子事件与中子事件,并耦合到以下两个探测器模块:类似的“第1年原型”和与PMT模块耦合的闪烁体。它表征了RMD探测器的本底噪声,相对信噪比(SNR),定时性能,PSD品质因数(FOM)和中子探测效率。这项工作还评估了SiSSPM检测器模块的缩放比例,以适应许多核物理实验所需的体积。 Si SSPM探测器模块在核物理实验中具有明显的优势,需要以下属性:中子和伽马射线事件的判别,强磁场中或附近的操作以及探测器的分段。

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