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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Simulating response functions and pulse shape discrimination for organic scintillation detectors with Geant4
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Simulating response functions and pulse shape discrimination for organic scintillation detectors with Geant4

机译:使用Geant4模拟有机闪烁探测器的响应函数和脉冲形状判别

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摘要

We present new capabilities of the Geant4 toolkit that enable the precision simulation of organic scintillation detectors within a comprehensive Monte Carlo code for the first time. As of version 10.0-beta, the Geant4 toolkit models the data-driven photon production from any user-defined scintillator, photon transportation through arbitrarily complex detector geometries, and time-resolved photon detection at the light readout device. By fully specifying the optical properties and geometrical configuration of the detector, the user can simulate response functions, photon transit times, and pulse shape discrimination. These capabilities enable detector simulation within a larger experimental environment as well as computationally evaluating novel scintillators, detector geometry, and light readout configurations. We demonstrate agreement of Geant4 with the NRESP7 code and with experiments for the spectroscopy of neutrons and gammas in the ranges 0-20 MeV and 0.511-1.274 MeV, respectively, using EJ301-based organic scintillation detectors. We also show agreement between Geant4 and experimental modeling of the particle-dependent detector pulses that enable simulated pulse shape discrimination.
机译:我们介绍了Geant4工具包的新功能,该功能首次在全面的蒙特卡洛代码内实现了有机闪烁探测器的精确仿真。从10.0-beta版本开始,Geant4工具包可模拟任何用户定义的闪烁器产生的数据驱动的光子,通过任意复杂的探测器几何结构进行的光子传输以及在光读取设备处的时间分辨光子检测。通过完全指定检测器的光学特性和几何结构,用户可以模拟响应函数,光子传输时间和脉冲形状辨别。这些功能使检测器能够在更大的实验环境中进行仿真,并能够通过计算评估新型闪烁体,检测器几何形状和光读出配置。我们使用基于EJ301的有机闪烁探测器,证明了Geant4与NRESP7代码的一致性,并与中子和伽马光谱的实验分别在0-20 MeV和0.511-1.274 MeV范围内。我们还显示了Geant4和与粒子相关的检测器脉冲的实验模型之间的一致性,该模型使得能够模拟脉冲形状识别。

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