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SiPM optical crosstalk amplification due to scintillator crystal: Effects on timing performance

机译:闪烁体晶体导致的SiPM光学串扰放大:对定时性能的影响

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摘要

For a given photon detection efficiency (PDE), the primary, Poisson distributed, dark count rate of the detector (DCR0) is one of the most limiting factors affecting the timing resolution of a silicon photomultiplier (SiPM) in the scintillation light readout. If the effects of DCR0 are removed through a suitable baseline compensation algorithm or by cooling, it is possible to clearly observe another phenomenon that limits the PDE, and thus the timing resolution of the detector. It is caused by the optical crosstalk of the SiPM, which is significantly increased by the presence of the scintillator. In this paper, we describe this phenomenon, which is also easily observed from the reverse I-V curve of the device, and we relate it to the measured coincidence resolving time in 511 keV γmeasurements. We discuss its consequences on the SiPM design and, in particular, we observe that there is an optimal cell size, dependent on both SiPM and crystal parameters, that maximizes the PDE in presence of optical crosstalk. Finally, we report on a crosstalk simulator developed to study the phenomenon and we compare the simulation results obtained for different SiPM technologies, featuring different approaches to the reduction of the crosstalk.
机译:对于给定的光子检测效率(PDE),探测器的主要泊松分布,暗计数率(DCR0)是影响闪烁光读数中硅光电倍增管(SiPM)时序分辨率的最大限制因素之一。如果通过适当的基线补偿算法或通过冷却消除了DCR0的影响,则可以清楚地观察到另一种限制PDE的现象,从而限制了检测器的定时分辨率。它是由SiPM的光学串扰引起的,而由于闪烁器的存在,串扰会大大增加。在本文中,我们描述了这种现象,该现象也很容易从设备的反向I-V曲线中观察到,并将其与511 keVγ测量中测得的重合分辨时间相关。我们讨论了它对SiPM设计的影响,尤其是,我们观察到有一个最佳的晶胞尺寸(取决于SiPM和晶体参数),可以在存在光学串扰的情况下最大化PDE。最后,我们报告了为研究这种现象而开发的串扰模拟器,并比较了针对不同SiPM技术获得的模拟结果,其中采用了不同的减少串扰的方法。

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