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首页> 外文期刊>Nuclear Science, IEEE Transactions on >Determination of Plutonium Isotopic Content by Microcalorimeter Gamma-Ray Spectroscopy
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Determination of Plutonium Isotopic Content by Microcalorimeter Gamma-Ray Spectroscopy

机译:微量热仪γ射线光谱法测定P同位素含量

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摘要

Microcalorimeter detectors provide unprecedented energy resolution for gamma-ray spectroscopy. One application is measuring the isotopic composition of plutonium-bearing samples by non-destructive gamma-ray spectroscopy to support nuclear safeguards and nonproliferation efforts. When measured with conventional high-purity germanium (HPGe) detectors, data from these samples contain significant peak overlaps requiring spectral deconvolution for analysis. The improved energy resolution of the microcalorimeter detector reduces peak overlaps leading to improvement in the statistical error component of the total measurement uncertainty. In this paper, we describe analysis code that was developed for spectral peak fitting and isotopic content determination from microcalorimeter and HPGe data. We apply the code to data collected from several plutonium standards to quantify the improvement of the statistical error derived from the improved energy resolution.
机译:微量热量计探测器为伽马射线光谱仪提供了前所未有的能量分辨率。一种应用是通过非破坏性伽马射线光谱法测量含p样品的同位素组成,以支持核保障措施和防扩散努力。当使用常规的高纯度锗(HPGe)检测器进行测量时,来自这些样品的数据包含明显的峰重叠,需要进行光谱解卷积才能进行分析。微量热量计检测器的改进的能量分辨率减少了峰重叠,从而改善了总测量不确定度的统计误差分量。在本文中,我们描述了为从微量量热仪和HPGe数据确定光谱峰拟合和同位素含量而开发的分析代码。我们将代码应用于从几种p标准收集的数据,以量化从改进的能量分辨率得出的统计误差的改进。

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