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Sensitivity studies on a novel nuclear forensics methodology for source reactor-type discrimination of separated weapons grade plutonium

机译:一种新颖的核法学方法对分离武器级p的源反应堆类型区分的敏感性研究

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A recently published nuclear forensics methodology for source discrimination of separated weapons-grade plutonium utilizes intra-element isotope ratios and a maximum likelihood formulation to identify the most likely source reactor-type, fuel burnup and time since irradiation of unknown material. Sensitivity studies performed here on the effects of random measurement error and the uncertainty in intra-element isotope ratio values show that different intra-element isotope ratios have disproportionate contributions to the determination of the reactor parameters. The methodology is robust to individual errors in measured intra-element isotope ratio values and even more so for uniform systematic errors due to competing effects on the predictions from the selected intra-element isotope ratios suite. For a unique sample-model pair, simulation uncertainties of up to 28% are acceptable without impeding successful source-reactor discrimination. However, for a generic sample with multiple plausible sources within the reactor library, uncertainties of 7% or less may be required. The results confirm the critical role of accurate reactor core physics, fuel burnup simulations and experimental measurements in the proposed methodology where increased simulation uncertainty is found to significantly affect the capability to discriminate between the reactors in the library.
机译:最近发布的一种用于区分武器级source源识别的核法证学方法,利用元素内同位素比率和最大似然公式来确定自未知材料辐照以来最可能的源反应堆类型,燃料燃烧和时间。在此对随机测量误差和元素内部同位素比率值的不确定性的影响进行的敏感性研究表明,不同元素内部同位素比率对确定反应堆参数的贡献不成比例。该方法对于元素内同位素比率测量值中的单个误差具有鲁棒性,对于统一的系统误差则更是如此,这是由于对所选元素内同位素比率套件对预测的竞争影响所致。对于唯一的样本模型对,模拟不确定度最高为28%是可以接受的,而不会妨碍成功区分源反应器。但是,对于反应堆库中具有多个合理来源的一般样品,可能需要7%或更少的不确定性。结果证实了拟议方法中准确的反应堆堆芯物理特性,燃料燃耗模拟和实验测量的关键作用,其中发现增加的模拟不确定性会显着影响库中区分反应堆的能力。

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