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Stochastic simulation study of HPGe detector response and the effect of detector aging using Geant4

机译:使用Geant4进行HPGe探测器响应的随机模拟研究以及探测器老化的影响

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In this study the effect of detector aging in terms of increased dead layer thickness on detector efficiency has been studied using the Geant4 toolkit. Variation of energy deposition in the detector dead layer with the dead layer thickness has been quantified for various values of incident g-ray energy considering point isotropic as well as extended sources including the circular disk source and cylindrical volume sources. For the point isotropic source, the Geant4 computed values of energy loss per particle in the dead layer are found in good agreement with the corresponding published results with maximum deviation remaining below 2 %. New results for dependence of geometric, full-energy peak and total efficiency on dead layer thickness have been studied using Geant4 simulations for various values of g-ray energy, and for point isotropic and extended sources at various axial and lateral positions. These simulations yield an exponentially decreasing profile of detector aging sensitivity with an increase in g-ray energy for point isotropic, circular disk and cylindrical volume sources highlighting a larger decrease in efficiency due to aging for low energy photons.
机译:在这项研究中,已使用Geant4工具包研究了死角厚度增加对探测器老化的影响,对探测器效率的影响。考虑到点各向同性以及包括圆盘源和圆柱体源在内的扩展源,已针对入射g射线能量的各种值量化了检测器死层中沉积的能量随死层厚度的变化。对于点各向同性源,发现死层中每个粒子的能量损失的Geant4计算值与相应的公布结果非常吻合,最大偏差保持在2%以下。使用Geant4模拟研究了各种几何能量,全能峰值和总效率对死层厚度的依赖性的新结果,这些值包括各种g射线能量值以及各轴向和横向位置的点各向同性和扩展源。对于点各向同性,圆盘和圆柱体体积源,这些模拟产生了探测器老化灵敏度的指数下降曲线,并且随着g射线能量的增加,突出显示了由于低能光子的老化而导致的效率下降幅度更大。

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