首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >GEANT4 code for simulation of a germanium gamma-ray detector and its application to efficiency calibration
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GEANT4 code for simulation of a germanium gamma-ray detector and its application to efficiency calibration

机译:GEANT4代码,用于模拟锗γ射线探测器及其在效率校准中的应用

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摘要

The GEANT4 software was developed by RD44, a world-wide collaboration of national institutes, laboratories and large High-Energy Physics experiments. GEANT4 is a public software package composed of tools which can be used to accurately simulate the passage of particles through matter. In this article, the first attempt to use GEANT4 to model a reverse electrode germanium detector (REGe), and to improve also its efficiency calibration procedure, is presented. A variance reduction algorithm based on a directional bias scheme is implemented into GEANT4 in order to accelerate the efficiency computations. A fast optimisation method to model the detector geometry using standard point sources is also presented and validated for point, Marinelli and air filter sources. The simulated full-energy peak efficiencies agreed with the measured values to within 1% between 36 and 1460 keV for these three counting geometries.
机译:GEANT4软件是由RD44开发的,RD44是国家机构,实验室和大型高能物理实验的全球合作。 GEANT4是由工具组成的公共软件包,可用于精确模拟粒子通过物质的通道。在本文中,首次尝试使用GEANT4对反向电极锗探测器(REGe)进行建模,并改善其效率校准程序。为了加快效率计算,在GEANT4中实现了基于方向偏差方案的方差减少算法。还提出了一种使用标准点源对检测器几何模型进行建模的快速优化方法,并针对点,Marinelli和空气过滤器源进行了验证。对于这三种计数几何形状,模拟的全能峰值效率与测量值一致,在36至1460 keV之间在1%以内。

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