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Pulse shape discrimination of CLYC scintillator coupled with a large SiPM array

机译:CLYC闪烁体与大型SiPM阵列耦合的脉冲形状识别

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摘要

This paper discusses measurements performed to evaluate the possibility to build a neutron probe based on a CLYC scintillator coupled with a large SiPM array. The use of a large SiPM array allows optimizing the light collection, necessary for spectrometry. However, a large SiPM array leads to huge capacitance, whose main impact is to slow down the input signals. Therefore, pulse shape discrimination (PSD) is lost due to the electronic process. To solve this problem, an electronic board was designed to extract the fastest scintillation decay times from the crystal without cutting the crystal response. The impact of using a large SiPM array instead of a PMT is evaluated by comparing the PSDs and the scintillation decay times. A figure of merit (FOM) of 2.3 was found with the SiPM versus a value of 2.64 for the PMT. In addition, the neutron efficiency was measured and compared to the one simulated with the MCNP code. The angular dependence and the linearity range in dose rate were also evaluated.
机译:本文讨论了为评估基于CLYC闪烁体和大型SiPM阵列构建中子探针的可能性而进行的测量。大型SiPM阵列的使用可优化光谱法所需的光收集。但是,大型SiPM阵列会导致巨大的电容,其主要影响是使输入信号变慢。因此,由于电子过程,丢失了脉冲形状鉴别(PSD)。为了解决这个问题,设计了一块电子板,以从晶体中提取最快的闪烁衰减时间,而不会降低晶体响应。通过比较PSD和闪烁衰减时间,可以评估使用大型SiPM阵列而不是PMT的影响。 SiPM的品质因数(FOM)为2.3,而PMT为2.64。此外,测量了中子效率并将其与使用MCNP代码模拟的中子效率进行了比较。还评估了剂量依赖性的角度依赖性和线性范围。

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