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Determining the efficiency of a broad-energy HPGe detector using Monte Carlo simulations

机译:使用蒙特卡洛模拟确定宽能HPGe探测器的效率

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摘要

Broad-energy HPGe detectors have a useful range of 3 keV to 3 MeV, making them ideal for the assay of environmental samples. Such measurements however, are hindered by variations in the sample matrix, summing effects, and the Compton continuum. Detectors may be characterised by proprietary software in such a situation, however Monte-Carlo modelling is a useful, inexpensive alternative that also provides greater flexibility when determining the detector response and efficiency during a measurement. In the current work, a full GEANT4 model of a broad-energy HPGe detector is presented, and simulations of various samples are compared to experimental data. These are found to be accurate within 3 % at a confidence level of 95 % for energies from 30 to 3,000 keV, with greater variations below 100 keV due to an increased sensitivity to geometrical inaccuracies.
机译:宽能HPGe探测器的有用范围为3 keV至3 MeV,使其成为测定环境样品的理想选择。但是,样本矩阵的变化,求和效果和康普顿连续性会阻碍此类测量。在这种情况下,检测器可以通过专有软件来表征,但是蒙特卡洛建模是一种有用的,廉价的替代方案,当确定测量过程中的检测器响应和效率时,它还提供了更大的灵活性。在当前的工作中,提出了一个宽能HPGe检测器的完整GEANT4模型,并将各种样品的模拟与实验数据进行了比较。对于从30到3,000 keV的能量,在95%的置信度下,这些值的精确度在3%之内,由于对几何误差的敏感性增加,在100 keV以下的变化更大。

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