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Computational and experimental forensics characterization of weapons-grade plutonium produced in a thermal neutron environment

机译:热中子环境中产生的武器级p的计算和实验法医鉴定

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The growing nuclear threat has amplified the need for developing diverse and accurate nuclear forensics analysis techniques to strengthen nuclear security measures. The work presented here is part of a research effort focused on developing a methodology for reactor-type discrimination of weapons-grade plutonium. To verify the developed methodology, natural UO 2 fuel samples were irradiated in a thermal neutron spectrum at the University of Missouri Research Reactor (MURR) and produced approximately 20?μg of weapons-grade plutonium test material. Radiation transport simulations of common thermal reactor types that can produce weapons-grade plutonium were performed, and the results are presented here. These simulations were needed to verify whether the plutonium produced in the natural UO 2 fuel samples during the experimental irradiation at MURR was a suitable representative to plutonium produced in common thermal reactor types. Also presented are comparisons of fission product and plutonium concentrations obtained from computational simulations of the experimental irradiation at MURR to the nondestructive and destructive measurements of the irradiated natural UO 2 fuel samples. Gamma spectroscopy measurements of radioactive fission products were mostly within 10%, mass spectroscopy measurements of the total plutonium mass were within 4%, and mass spectroscopy measurements of stable fission products were mostly within 5%.
机译:不断增长的核威胁已扩大了开发各种准确的核法证分析技术以加强核安全措施的需求。此处介绍的工作是一项研究工作的一部分,该研究工作的重点是开发一种用于对武器级reactor进行反应堆类型识别的方法。为了验证所开发的方法,在密苏里大学研究堆(MURR)的热中子光谱中辐照了天然UO 2燃料样品,并生产了约20微克的武器级p测试材料。进行了可以产生武器级p的常见热反应堆类型的辐射输运模拟,并在此处显示了结果。需要进行这些模拟,以验证在MURR进行的实验辐射过程中,天然UO 2燃料样品中产生的whether是否适合代表普通热反应堆类型中产生的p。还介绍了裂变产物和p浓度的比较,这些裂变产物和p浓度是通过对MURR进行的实验辐照的计算模拟与辐照的自然UO 2燃料样品的非破坏性和破坏性测量结果进行比较而得出的。放射性裂变产物的伽马光谱测量值大多在10%以内,总,质量的质谱测量值在4%以内,稳定裂变产物的质谱测量值大多在5%以内。

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