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Modeling of single photon avalanche diode array detectors for PET applications

机译:用于PET应用的单光子雪崩二极管阵列探测器的建模

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摘要

We introduce a novel configurable model of single photon avalanche diodes (SPAD) array photodetectors with intelligent control and active quenching, where individual components can be simulated independently and subsequently linked to provide the overall detector response. The model enables the simulation of performance characteristics including, but not limited to, photon detection efficiency, timing and energy resolution, and can be used to optimize detector performance for specific applications, such as PET. The simulator was implemented in the MATLAB® environment and consists of multiple configurable and interchangeable modules to model the array geometry, SPAD characteristics and readout electronics based on physics and statistical equations. Monte Carlo simulations are used to model the 511 keV annihilation photon interactions and the optical photon transport in the scintillator, as well as carrier random walk in the silicon. Different methods to extract information from the digital output signal can easily be tested and compared. The simulation results for photon detection efficiency, energy resolution and timing resolution are reported.
机译:我们介绍了具有智能控制和主动猝灭功能的单光子雪崩二极管(SPAD)阵列光电探测器的新型可配置模型,其中可以独立模拟各个组件,然后将其链接以提供整体探测器响应。该模型可以模拟性能特征,包括但不限于光子检测效率,定时和能量分辨率,并且可以用于优化特定应用(例如PET)的检测器性能。该模拟器是在MATLAB ®环境中实现的,由多个可配置和可互换的模块组成,这些模块可基于物理和统计方程对阵列的几何形状,SPAD特性和读出电子设备进行建模。蒙特卡洛模拟用于对闪烁体中511 keV an灭的光子相互作用和光子传输以及硅中的载流子随机游走进行建模。可以很容易地测试和比较从数字输出信号中提取信息的不同方法。报道了光子检测效率,能量分辨率和定时分辨率的仿真结果。

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