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Energy dispersive X-ray diffraction spectral resolution considerations for security screening applications

机译:能量色散X射线衍射光谱分辨率在安全筛选应用中的考虑

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Energy dispersive X-ray diffraction (EDXRD) is a very effective method for explosive and narcotic threat detection in baggage screening. The XRD profiles arise from the molecular interference when X-rays are coherently scattered by a substance. The accurate identification of the target material depends on the ability to detect and resolve the peaks present in the coherent scatter profiles. A high-energy resolution High Purity Germanium (HPGe) detector is therefore generally used in such type of systems. To evaluate the suitability of cost-effective room-temperature semiconductor detectors for next-generation baggage screening systems, an assessment of the minimal requirements for the system resolution is required. In this study a hybrid Monte Carlo code has been modified to account for the molecular interference function that gives rise to the coherent scatter signature. A model for a realistic response function for Cadmium Zinc Telluride (CZT) detectors is then used to convolve the spectral output. This simulation tool is then used to assess the system design features and their influence on spectral resolution.
机译:能量色散X射线衍射(EDXRD)是在行李检查中检测爆炸物和麻醉品威胁的一种非常有效的方法。当X射线被一种物质相干地散射时,XRD谱图是由分子干扰引起的。对目标材料的准确识别取决于检测和分辨相干散射曲线中存在的峰的能力。因此,在这种类型的系统中通常使用高能量分辨率的高纯锗(HPGe)检测器。为了评估经济高效的室温半导体探测器对下一代行李筛查系统的适用性,需要评估系统分辨率的最低要求。在这项研究中,对混合蒙特卡罗代码进行了修改,以解决引起相干散射特征的分子干扰函数。然后,使用碲化镉锌(CZT)检测器的实际响应函数模型来对光谱输出进行卷积。然后,使用该仿真工具评估系统设计功能及其对光谱分辨率的影响。

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