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The effect of gain variation in micro-channel plates on gamma-rayenergy resolution

机译:微通道板增益变化对伽马射线的影响能量分辨率

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摘要

A Monte Carlo simulation of micro-channel plate (MCP) with particular interest in its effect on energy resolution performance is presented. Important physical processes occurring in MCP channels are described and modeled, including secondary electron (SE) yield, SE emission, and primary electron reflection. The effects causing channel saturation are also introduced. A two dimensional Monte Carlo simulation is implemented under the assumption of unsaturated channel. Simulation results about basic MCP performances and especially gain and energy resolution performances are presented and analyzed. It’s found that energy resolution as an intrinsic property of MCP cannot be improved simply by adjusting system parameters; however it can be improved by increasing input signal or number of photoelectrons (PEs) in the context of image intensifier. An initial experiment with BazookaSPECT detector and CsI(Tl) scintillator is performed to validate and correlate with the simulation results and good agreement is achieved.
机译:提出了微通道板(MCP)的蒙特卡洛模拟,其中特别关注其对能量分辨率性能的影响。描述和建模了发生在MCP通道中的重要物理过程,包括二次电子(SE)产量,SE发射和一次电子反射。还介绍了导致通道饱和的效应。在不饱和通道的假设下实现了二维蒙特卡罗模拟。给出并分析了有关基本MCP性能,尤其是增益和能量分辨率性能的仿真结果。发现,仅通过调整系统参数就无法提高能量分辨率作为MCP的固有属性;然而,在图像增强器的背景下,可以通过增加输入信号或增加光电子(PE)的数量来改善它。使用BazookaSPECT检测器和CsI(Tl)闪烁体进行了初步实验,以验证仿真结果并将其与仿真结果相关联,并取得了良好的一致性。

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