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Active neutron and gamma-ray imaging of highly enriched uranium for treaty verification

机译:高浓缩铀的有源中子和伽马射线成像以进行条约核查

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摘要

The detection and characterization of highly enriched uranium (HEU) presents a large challenge in the non-proliferation field. HEU has a low neutron emission rate and most gamma rays are low energy and easily shielded. To address this challenge, an instrument known as the dual-particle imager (DPI) was used with a portable deuterium-tritium (DT) neutron generator to detect neutrons and gamma rays from induced fission in HEU. We evaluated system response using a 13.7-kg HEU sphere in several configurations with no moderation, high-density polyethylene (HDPE) moderation, and tungsten moderation. A hollow tungsten sphere was interrogated to evaluate the response to a possible hoax item. First, localization capabilities were demonstrated by reconstructing neutron and gamma-ray images. Once localized, additional properties such as fast neutron energy spectra and time-dependent neutron count rates were attributed to the items. For the interrogated configurations containing HEU, the reconstructed neutron spectra resembled Watt spectra, which gave confidence that the interrogated items were undergoing induced fission. The time-dependent neutron count rate was also compared for each configuration and shown to be dependent on the neutron multiplication of the item. This result showed that the DPI is a viable tool for localizing and confirming fissile mass and multiplication.
机译:高浓缩铀(HEU)的检测和表征在不扩散领域提出了巨大的挑战。 HEU的中子发射率低,大多数伽马射线的能量都很低并且易于屏蔽。为了解决这一挑战,将一种称为双粒子成像仪(DPI)的仪器与便携式氘((DT)中子发生器一起使用,以检测HEU中诱发裂变的中子和伽马射线。我们评估了使用13.7千克HEU球在几种配置下的系统响应,这些配置无节制,高密度聚乙烯(HDPE)节制和钨节制。一个空心的钨球被询问以评估对可能的骗局的反应。首先,通过重建中子和伽马射线图像证明了定位能力。定位后,其他属性(例如快速中子能谱和随时间变化的中子计数率)将归因于这些项。对于包含HEU的被询问构型,重建的中子光谱类似于Watt光谱,这使被询问的物质正经历诱发裂变的信心。还比较了每种配置的随时间变化的中子计数率,并显示其依赖于该项目的中子倍增。该结果表明,DPI是定位和确认裂变质量和增殖的可行工具。

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