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The statistical distribution of the number of counted scintillation photons in digital silicon photomultipliers: Model and validation

机译:数字硅光电倍增管中计数的闪烁光子数的统计分布:模型和验证

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In the design and application of scintillation detectors based on silicon photomultipliers (SiPMs), e.g. in positron emission tomography imaging, it is important to understand and quantify the non-proportionality of the SiPM response due to saturation, crosstalk and dark counts. A new type of SiPM, the so-called digital silicon photomultiplier (dSiPM), has recently been introduced. Here, we develop a model of the probability distribution of the number of fired microcells, i.e. the number of counted scintillation photons, in response to a given amount of energy deposited in a scintillator optically coupled to a dSiPM. Based on physical and functional principles, the model elucidates the statistical behavior of dSiPMs. The model takes into account the photon detection efficiency of the detector; the light yield, excess variance and time profile of the scintillator; and the crosstalk probability, dark count rate, integration time and the number of microcells of the dSiPM. Furthermore, relations for the expectation value and the variance of the number of fired cells are deduced. These relations are applied in the experimental validation of the model using a dSiPM coupled to a LSO:Ce,Ca scintillator. Finally, we propose an accurate method for the correction of energy spectra measured with dSiPM-based scintillation detectors.
机译:在基于硅光电倍增管(SiPM)的闪烁探测器的设计和应用中,例如在正电子发射断层扫描成像中,重要的是要了解和量化由于饱和度,串扰和暗数引起的SiPM响应的非比例性。最近推出了一种新型的SiPM,即所谓的数字硅光电倍增管(dSiPM)。在这里,我们响应于光耦合到dSiPM的闪烁体中沉积的给定能量,开发了发射微细胞数(即计数的闪烁光子数)的概率分布模型。基于物理和功能原理,该模型阐明了dSiPM的统计行为。该模型考虑了探测器的光子探测效率。闪烁体的光输出,过量变化和时间曲线;以及dSiPM的串扰概率,暗计数率,积分时间和微单元数量。此外,推导了期望值与点火单元数量的方差之间的关系。使用与LSO:Ce,Ca闪烁体耦合的dSiPM,将这些关系应用于模型的实验验证。最后,我们提出了一种校正基于dSiPM的闪烁探测器测得的能谱的准确方法。

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