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首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry: An International Journal Dealing with All Aspects and Applications of Nuclear Chemistry >Streamlined Monte Carlo simulation of environmental gamma-ray backgrounds for radiation detector sensitivity comparisons
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Streamlined Monte Carlo simulation of environmental gamma-ray backgrounds for radiation detector sensitivity comparisons

机译:辐射探测器敏感性比较环境伽马射线背景的简化蒙特卡罗模拟

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摘要

In recent research to compare detection sensitivities of gamma spectrometers applied to in situ and field laboratory scenarios, the authors lacked background data for comparable detection sensitivity calculations. To overcome this, experimental measurements and Monte Carlo modeling of terrestrial gamma radiation were undertaken. Inspired by Vojtyla's research to reduce the computing burden of modeling bremsstrahlung from lead surfaces, this related approach defines a gamma-ray surface source representing emission of background gamma-rays from the earth. This work presents a surface source based on the K-40, Cs-137, uranium, and thorium content of Hanford soil, and compares modeled backgrounds to experimental in situ gamma measurements.
机译:在最近的研究中,为了比较应用于原位和现场实验室场景的伽马光谱仪的检测灵敏度,作者缺乏用于可比检测灵敏度计算的背景数据。 为了克服这一点,进行了实验测量和陆地伽玛辐射的蒙特卡罗建模。 灵感来自Vojtyla的研究,以减少从铅表面模拟Bremsstrahlung的计算负担,这种相关方法限定了代表来自地球背景伽马射线的伽马射线表面源。 该工作介绍了基于K-40,CS-137,铀土壤的K-40,CS-137,铀和钍含量的表面源,并将建模背景与实验性γ测量进行比较。

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