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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Simulation and efficiency studies of optical photon transportation and detection with plastic antineutrino detector modules
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Simulation and efficiency studies of optical photon transportation and detection with plastic antineutrino detector modules

机译:塑料中微子探测器模块对光子传输和探测的模拟和效率研究

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In this work, the simulation of optical photons is carried out in an antineutrino detector module consisting of a plastic scintillator connected to light guides and photomultipliers on both ends, which is considered to be used for remote reactor monitoring in the field of nuclear safety. Using Monte Carlo (MC) based GEANT4 simulation, numerous parameters influencing the light collection and thereby the energy resolution of the antineutrino detector module are studied: e.g., degrees of scintillator surface roughness, reflector type, and its applying method onto scintillator and light guide surface, the reflectivity of the reflector, light guide geometries and diameter of the photocathode. The impact of each parameter is investigated by looking at the detected spectrum, i.e. the number photoelectrons per depositing energy. In addition, the average light collection efficiency of the detector module and its spatial variation are calculated for each simulation setup. According to the simulation results, it is found that photocathode size, light guide shape, reflectivity of reflecting material and wrapping method show a significant impact on the light collection efficiency while scintillator surface polishing level and the choose of reflector type show relatively less impact. This study demonstrates that these parameters are very important in the design of plastic scintillator included antineutrino detectors to improve the energy resolution efficiency.
机译:在这项工作中,对光中子的模拟是在一个抗中微子检测器模块中进行的,该模块由一个塑料闪烁体组成,该闪烁体连接到两端的光导和光电倍增管,被认为可用于核安全领域中的远程反应堆监测。使用基于蒙特卡洛(MC)的GEANT4模拟,研究了许多影响光收集的参数,从而研究了抗中微子检测器模块的能量分辨率:例如,闪烁体的表面粗糙度,反射器类型及其在闪烁体和光导表面上的应用方法,反射镜的反射率,光导几何形状和光电阴极的直径。通过查看检测到的光谱,即每沉积能量的光电子数,可以研究每个参数的影响。此外,还针对每种模拟设置计算了检测器模块的平均集光效率及其空间变化。根据仿真结果,发现光电阴极尺寸,光导形状,反射材料的反射率和包裹方法对聚光效率有显着影响,而闪烁体的表面抛光水平和反射器类型的选择则相对较少。这项研究表明,这些参数在塑料闪烁体包括抗中微子探测器的设计中非常重要,以提高能量分辨效率。

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