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Estimation of the properties of an energy-dispersive X-ray fluorescence spectrometer based on a composite double-layer detector

机译:基于复合双层探测器的能量色散X射线荧光光谱仪的性能评估

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摘要

A mathematical model of double-layer Si-Ge and Si-AsGa energy-dispersive detectors of X-rays based on the analysis of processes of radiation and electron transfer in the detector is proposed along with a model of an energy-dispersive X-ray fluorescence spectrometer on the basis of this detector. The probabilities of recording of photons in different sections of the detector response function are calculated using the Monte-Carlo technique. It is shown that, in using an anticoincidence circuit and a Si detector as the first layer and Ge or AsGa detectors as the second layer, a detector with improved characteristics can be obtained, namely, the suppressed loss peaks of Ge or As and Ga and the efficiency of detection at the high radiation energy close to that of the Ge or AsGa detector. This detector in the energy-dispersive X-ray fluorescence spectrometer in some cases allows the reduction of the background level.
机译:基于对X射线双层Si-Ge和Si-AsGa能量色散探测器的辐射和电子传输过程的分析,提出了一种数学模型,该模型与X射线能量散布的模型有关。荧光光谱仪基于此检测器。使用蒙特卡洛技术计算在探测器响应函数的不同部分中记录光子的概率。示出了,通过将防碰巧电路和Si检测器用作第一层并且将Ge或AsGa检测器用作第二层,可以获得具有改善的特性的检测器,即,抑制了Ge或As和Ga的损耗峰。在接近Ge或AsGa探测器的高辐射能下的探测效率。能量分散型X射线荧光光谱仪中的这种检测器在某些情况下可以降低背景水平。

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