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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Application of the Monte Carlo method to the analysis of measurement geometries for the calibration of a HP Ge detector in an environmental radioactivity laboratory
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Application of the Monte Carlo method to the analysis of measurement geometries for the calibration of a HP Ge detector in an environmental radioactivity laboratory

机译:蒙特卡罗方法在环境放射性实验室中校准HP Ge探测器的测量几何形状分析中的应用

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摘要

A gamma spectrometer including an HP Ge detector is commonly used for environmental radioactivity measurements. The efficiency of the detector should be calibrated for each geometry considered. Simulation of the calibration procedure with a validated computer program is an important auxiliary tool for environmental radioactivity laboratories. The MCNP code based on the Monte Carlo method has been applied to simulate the detection process in order to obtain spectrum peaks and determine the efficiency curve for each modelled geometry. The source used for measurements was a calibration mixed radionuclide gamma reference solution, covering a wide energy range (50-2000 keV). Two measurement geometries - Marinelli beaker and Petri boxes - as well as different materials - water, charcoal, sand - containing the source have been considered. Results obtained from the Monte Carlo model have been compared with experimental measurements in the laboratory in order to validate the model.
机译:包括HP Ge探测器的伽马能谱仪通常用于环境放射性测量。检测器的效率应针对所考虑的每种几何形状进行校准。使用经过验证的计算机程序对校准过程进行仿真是环境放射性实验室的重要辅助工具。基于蒙特卡洛方法的MCNP代码已应用于模拟检测过程,以获得光谱峰并确定每种建模几何的效率曲线。用于测量的源是校准的混合放射性核素伽马参比溶液,其覆盖的能量范围很广(50-2000 keV)。已经考虑了包含测量源的两种测量几何形状-Marinelli烧杯和Petri盒-以及不同的材料-水,木炭,沙子。从蒙特卡洛模型获得的结果已与实验室中的实验测量结果进行了比较,以验证该模型。

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