一种被动探测核弹头中炸药和武器级钚的方法

IF 0.7 Q3 INTERNATIONAL RELATIONS
Huang Meng, Zhu Jian-yu, Wu Jun, Li Rui
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引用次数: 1

摘要

在拆除核弹头之前,必须对特殊核材料和炸药进行识别和鉴定。本文提出了一种基于中子分析技术的被动探测和识别武器级核弹头钚芯和爆炸物的方法。本文首先介绍了通过计算感兴趣元素的元素数比(即两个不同元素的核数之比)来识别源的被动探测方法的原理,以及如何将该方法应用于弹头炸药的探测。其次,描述了使用JMCT软件对武器级钚的模拟。模拟假设炸药的元素成分是由武器级钚核心的中子的产生和传输激活的,并使用高纯度锗探测器(HPGe)阵列计算由此产生的氢、碳和氮核素的伽马射线发射。经过一个小时的计算,重建了模拟中这些元素的元素数比,并与战斗部中炸药的值精确匹配。这些结果表明,被动式方法可用于鉴定弹头中是否存在武器级钚。此外,仿真结果表明,该方法还能区分弹头内不同类型的炸药,为拆除时的验证过程提供重要的物理信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Passive Method for the Detection of Explosives and Weapons-Grade Plutonium in Nuclear Warheads
Abstract Before a nuclear warhead is dismantled, the special nuclear material and explosives must be identified and authenticated. This paper proposes a passive method to detect and identify weapons-grade plutonium cores and explosives in nuclear warheads based on neutron analyses techniques. This paper first describes the principles of a passive detection method that calculates the element number ratio (namely the ratio between the nucleus numbers of two different elements) of the element of interest to identify a source and how this method could be applied to the detection of warhead explosives. Second, a simulation of weapons-grade plutonium using JMCT software is described. The simulation assumes the elemental components of the explosives are activated by the production and transport of neutrons from the weapons-grade plutonium core and counted the gamma ray emissions of from the resultant hydrogen, carbon, and nitrogen nuclides with a high-purity germanium detector (HPGe) array. After an hour of counting, the element number ratios of these elements in the simulation were reconstructed and accurately matched the values for the explosives in the warhead. These results suggest that the passive method can be used to identify the presence of weapons-grade plutonium in the warhead. In addition, the simulation showed that the passive method can also discriminate between the various types of explosives in warheads, providing important physical information for the verification process during dismantlement.
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来源期刊
Science & Global Security
Science & Global Security INTERNATIONAL RELATIONS-
CiteScore
1.00
自引率
14.30%
发文量
8
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