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Monte Carlo simulation of the response functions of CdTe detectors to be applied in x-ray spectroscopy

机译:应用于X射线光谱的CdTe探测器响应函数的蒙特卡洛模拟

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In this work, the energy response functions of a CdTe detector were obtained by Monte Carlo (MC) simulation in the energy range from 5 to 160 keV, using the PENELOPE code. In the response calculations the carrier transport features and the detector resolution were included. The computed energy response function was validated through comparison with experimental results obtained with Am-241 and Eu-152 sources. In order to investigate the influence of the correction by the detector response at diagnostic energy range, x-ray spectra were measured using a CdTe detector (model XR-100T, Amptek), and then corrected by the energy response of the detector using the stripping procedure. Results showed that the CdTe exhibits good energy response at low energies (below 40 key), showing only small distortions on the measured spectra. For energies below about 80 keV, the contribution of the escape of Cd- and Te-K x-rays produce significant distortions on the measured x-ray spectra. For higher energies, the most important correction is the detector efficiency and the carrier trapping effects. The results showed that, after correction by the energy response, the measured spectra are in good agreement with those provided by a theoretical model of the literature. Finally, our results showed that the detailed knowledge of the response function and a proper correction procedure are fundamental for achieving more accurate spectra from which quality parameters (i.e., half-value layer and homogeneity coefficient) can be determined. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项工作中,使用PENELOPE代码通过Monte Carlo(MC)模拟在5至160 keV的能量范围内获得了CdTe检测器的能量响应函数。在响应计算中,包括了载流子传输特征和检测器分辨率。通过与Am-241和Eu-152光源获得的实验结果进行比较,验证了计算得到的能量响应函数。为了研究在诊断能量范围内检测器响应进行校正的影响,使用CdTe检测器(型号XR-100T,Amptek)对X射线光谱进行了测量,然后使用剥离技术通过检测器的能量响应进行了校正。程序。结果表明,CdTe在低能量(低于40键)下显示出良好的能量响应,在测量光谱上仅显示出很小的失真。对于低于约80 keV的能量,Cd和Te-K x射线逸散的贡献会在测量的x射线光谱上产生明显的畸变。对于更高的能量,最重要的校正是检测器效率和载流子捕获效应。结果表明,经能量响应校正后,测得的光谱与文献理论模型提供的光谱吻合良好。最后,我们的结果表明,对响应函数的详细了解和正确的校正程序是获得更准确的光谱的基础,从光谱中可以确定质量参数(即半值层和均匀系数)。 (C)2015 Elsevier Ltd.保留所有权利。

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