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A software package using a mesh-grid method for simulating HPGe detector efficiencies

机译:一种使用网格栅格方法的软件包,用于模拟HPGE探测器效率

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摘要

Traditional ways of determining the absolute full-energy peak efficiencies of high-purity germanium (HPGe) detectors are often time consuming, cost prohibitive, or not feasible. A software package, KMESS (Kevin's Mesh Efficiency Simulator Software), was developed to assist in predicting these efficiencies. It uses a semi-empirical mesh-grid method and works for arbitrary source shapes and counting geometries. The model assumes that any gamma-ray source shape can be treated as a large enough collection of point sources. The code is readily adaptable, has a web-based graphical front-end, and could easily be coupled to a 3D scanner. As will be shown, this software can estimate absolute full-energy peak efficiencies with good accuracy in reasonable computation times. It has applications to the field of gamma-ray spectroscopy because it is a quick and accurate way to assist in performing quantitative analyses using HPGe detectors.
机译:确定高纯度锗(HPGE)探测器的绝对全能峰值效率(HPGE)探测器的传统方式通常是耗时的,成本越长,或不可行。 开发了一种软件包(Kevin的网格效率模拟器软件),以帮助预测这些效率。 它使用半经验网格网格方法,用于任意源形状和计数几何形状。 该模型假设任何伽马射线源形状都可以被视为足够的点源集合。 代码很容易适应,具有基于Web的图形前端,并且可以容易地耦合到3D扫描仪。 如将显示,该软件可以在合理的计算时间内以良好的准确度估计绝对的全能量峰值效率。 它具有在伽马射线光谱领域的应用,因为它是一种快速准确的方式来帮助使用HPGE探测器进行定量分析。

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