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Development of a Simulation Tool to Predict the Behavior of a SiPM Detector Coupled to a Scintillation Crystal

机译:开发模拟工具以预测SIPM检测器的行为耦合到闪烁晶体

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The present paper focuses on the development of the SimPET simulation tool intended for the estimation of the solid-state photons detector (Silicon Photomultiplier, SiPM, or Multi-Pixel Photon Counter, MPPC) and front-end electronics responses to scintillations generated in LYSO crystals of a PET scanner. The SimPET simulation software is presented, including the description of methods and algorithms used to simulate the photon generation, propagation, impact photon-SiPM, and the behavior of each pixel in the photon detector following this impact. The saturation effects caused by the dead time after each avalanche were taken into consideration, as well as the interdependence between SiPM pixels. The resulting output current vs. time curves obtained by simulation are then presented and compared with the ones obtained experimentally, indicating good agreement. The simulation models of frond-end electronics, including filters, ADCs, and digital signal processing unit are also presented. Finally, the simulation results are discussed in terms of their impact on the energy and position measurement resolution.
机译:本文侧重于开发用于估计固态光子检测器(硅光电倍增器,SIPM或多像素光子计数器,MPPC)和前端电子设备对Lyso晶体产生的闪烁的闪烁的估计宠物扫描仪。提出了SIMPET模拟软件,包括用于模拟光子产生,传播,冲击光子-SIPM的方法和算法的描述,以及在这种冲击之后的光子检测器中的每个像素的行为。考虑每个雪崩之后的死区时间引起的饱和效果,以及SIPM像素之间的相互依存。然后呈现通过模拟获得的产生的输出电流与时间曲线与实验获得的那些相比,表明良好的一致性。还提出了融合器,包括过滤器,ADC和数字信号处理单元的仿真模型。最后,在它们对能量和位置测量分辨率的影响方面讨论了模拟结果。

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