Comparison of Experimental and Monte Carlo Efficiencies of 0.5g/cc Epoxy Matrix Marinelli Source with Multiple Radioactive Nuclides

G. Aksoy, Hasan Ünlü, Nilgün Orhan, M. Bölükdemir
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引用次数: 1

Abstract

Using the gamma spectroscopy system, it can be determined whether environmental samples or standard radioactive sources are radioactive, and from which elements their radioactivity originates. The purpose of Monte Carlo (MC) simulation is to model a real-life system with its inputs and evaluate the outputs with real results. This study calculates the experimental efficiency of a p-type HPGe detector using a 0.5 g/cc Epoxy Matrix Marinelli beaker and compares these results with GESPECOR and PHITS MC Simulation programs. Thus, the thickness of the dead layer, which thickens over time and affects the detector efficiency, was determined from the most compatible result of the MC calculations made repeatedly at various alternative thicknesses to the experimental results. For 1.5 mm dead layer thickness, less than 2 % error was found between the test and MC results, especially at energies above 165 keV. As a result, it was determined that the dead layer thickness of the detector reached 1.5 mm with an increase of 114 % after its production. The current value of the dead layer thickness of each detector should be checked, as the efficiency affects the determination of the activity.
含多种放射性核素的0.5g/cc环氧基Marinelli源的实验效率与蒙特卡罗效率比较
利用伽马光谱系统,可以确定环境样品或标准放射源是否具有放射性,以及它们的放射性来自哪些元素。蒙特卡罗(MC)仿真的目的是用实际系统的输入对其进行建模,并用实际结果对其输出进行评估。本研究使用0.5 g/cc环氧基Marinelli烧杯计算了p型HPGe探测器的实验效率,并将结果与GESPECOR和PHITS MC模拟程序进行了比较。因此,随着时间的推移而变厚并影响探测器效率的死层厚度,是根据在各种可选厚度下反复进行的MC计算的最相容结果与实验结果确定的。对于1.5 mm的死层厚度,测试结果与MC结果之间的误差小于2%,特别是在能量高于165 keV时。结果表明,该探测器的死层厚度在生产后达到1.5 mm,增加了114%。应检查每个检测器的死层厚度的电流值,因为效率影响活性的确定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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