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Experimental evaluation of material identification methods with CdTe X-rays spectrometric detector

机译:CdTe X射线光谱检测器材料鉴定方法的实验评估

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This paper presents multi dimensional approaches for material identification applied on experimental X-ray measurements obtained with CdTe spectrometric detector. LETI has been developing a 16 channels fast read-out electronics capable to perform spectrometric measurements at count rates above 107 counts/s. The read-out electronics was coupled to CdTe linear array pixel detectors. A multidimensional analysis of the measured spectra has been developed to perform material identification. The results show a decrease of false detection rate by a factor up to 2 compared to an optimised dual counting approach applied on the same spectrometric raw data. Compared to a sandwich detector, the false detection rate is decreasing by a factor higher than 3 for thin objects. Generally, the paper demonstrates quantitatively the continuous performance and robustness increase with the number of detector energy channels.
机译:本文介绍了用于材料鉴定的多维方法,这些方法适用于使用CdTe光谱检测器获得的实验X射线测量结果。 LETI已开发出一种16通道快速读出电子设备,能够以高于10 7 counts / s的计数率执行光谱测量。读出的电子器件耦合到CdTe线性阵列像素检测器。已开发出对测量光谱的多维分析,以进行材料识别。结果表明,与应用于相同光谱原始数据的优化双重计数方法相比,错误检测率降低了2倍。与三明治检测器相比,对于薄物体,错误检测率降低了3倍以上。通常,本文定量地证明了连续性能和鲁棒性随检测器能量通道数量的增加而增加。

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