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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Analytical models of probability distribution and excess noise factor of solid state photomultiplier signals with crosstalk
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Analytical models of probability distribution and excess noise factor of solid state photomultiplier signals with crosstalk

机译:具有串扰的固态光电倍增器信号的概率分布和超额噪声因子的解析模型

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Silicon Photomultipliers (SiPM), also called Solid State Photomultipliers (SSPM), are based on Geiger mode avalanche breakdown that is limited by a strong negative feedback. An SSPM can detect and resolve single photons due to the high gain and ultra-low excess noise of avalanche multiplication in this mode. Crosstalk and afterpulsing processes associated with the high gain introduce specific excess noise and deteriorate the photon number resolution of the SSPM. The probabilistic features of these processes are widely studied because of its significance for the SSPM design, characterization, optimization and application, but the process modeling is mostly based on Monte Carlo simulations and numerical methods. In this study, crosstalk is considered to be a branching Poisson process, and analytical models of probability distribution and excess noise factor (ENF) of SSPM signals based on the Borel distribution as an advance on the geometric distribution models are presented and discussed. The models are found to be in a good agreement with the experimental probability distributions for dark counts and a few photon spectrums in a wide range of fired pixels number as well as with observed super-linear behavior of crosstalk ENF.
机译:硅光电倍增管(SiPM),也称为固态光电倍增管(SSPM),基于盖革模式雪崩击穿,该击穿受强大的负反馈限制。在此模式下,由于雪崩倍增的高增益和超低超额噪声,SSPM可以检测和解析单个光子。与高增益相关的串扰和后脉冲过程会引入特定的过大噪声,并降低SSPM的光子数分辨率。由于这些过程对SSPM设计,表征,优化和应用具有重要意义,因此对它们的概率特征进行了广泛研究,但是过程建模主要基于蒙特卡洛模拟和数值方法。在这项研究中,串扰被认为是一个分支的Poisson过程,并提出并讨论了基于Borel分布的SSPM信号的概率分布和超噪声因子(ENF)的解析模型,并以此为基础进行了讨论。这些模型与暗计数和在宽范围发射像素数范围内的一些光子光谱的实验概率分布以及串扰ENF的超线性行为都非常吻合。

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