首页> 外文期刊>International Journal of Modern Physics: Conference Series >Experiments and Monte Carlo modeling of a higher resolution Cadmium Zinc Telluride detector for safeguards applications
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Experiments and Monte Carlo modeling of a higher resolution Cadmium Zinc Telluride detector for safeguards applications

机译:用于保障应用的高分辨率碲化镉锌探测器的实验和蒙特卡洛建模

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摘要

The Belgian Nuclear Research Centre is engaged in R&D activity in the field of Non Destructive Analysis on nuclear materials, with focus on spent fuel characterization. A 500 mm~(3) Cadmium Zinc Telluride (CZT) with enhanced resolution was recently purchased. With a full width at half maximum of 1.3% at 662 keV, the detector is very promising in view of its use for applications such as determination of uranium enrichment and plutonium isotopic composition, as well as measurement on spent fuel. In this paper, I report about the work done with such a detector in terms of its characterization. The detector energy calibration, peak shape and efficiency were determined from experimental data. The data included measurements with calibrated sources, both in a bare and in a shielded environment. In addition, Monte Carlo calculations with the MCNPX code were carried out and benchmarked with experiments.
机译:比利时核研究中心从事核材料无损分析领域的研发活动,重点是乏燃料的表征。最近购买了分辨率更高的500 mm〜(3)碲化镉锌(CZT)。该探测器在662 keV处的半峰全宽为1.3%,鉴于其在确定铀浓缩和p同位素组成以及对乏燃料进行测量等应用中的用途,非常有前途。在本文中,我报告了这种检测器在表征方面所做的工作。从实验数据确定检测器的能量校准,峰形和效率。数据包括在裸露和屏蔽环境中使用校准源进行的测量。此外,还使用MCNPX代码进行了蒙特卡洛计算,并以实验为基准。

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