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用于核不扩散应用的特殊核材料的检测和特性分析。

Detecting and characterizing special nuclear material for nuclear nonproliferation applications.

机构信息

Department of Nuclear Engineering and Radiological Sciences, University of Michigan, Ann Arbor, MI, 48109, USA.

Los Alamos National Laboratory, Los Alamos, NM, 87545, USA.

出版信息

Sci Rep. 2023 Jun 27;13(1):10432. doi: 10.1038/s41598-023-36171-8.

Abstract

There is an urgent need for new, better instrumentation and techniques for detecting and characterizing special nuclear material (SNM), i.e., highly enriched uranium and plutonium. The development of improved instruments and techniques requires experiments performed with the SNM itself, which is of limited availability. This paper describes the findings of experiments performed at the National Criticality Experiments Research Center conducted using new instruments and techniques on unclassified, kg-quantity SNM objects. These experiments, performed in the framework of the Department of Energy, National Nuclear Security Administration Consortium for Monitoring, Technology, and Verification, focused on detecting, characterizing, and localizing SNM samples with masses ranging from 3.3 to 13.8 kg, including plutonium and highly enriched uranium using prototype detectors and techniques. The work demonstrates SNM detection and characterization using recently-developed prototype detection systems. Specifically, we present new results in passive detection and imaging of plutonium and uranium objects using gamma-ray and dual particle (fast neutron and gamma-ray) imaging. We also present a new analysis of the delayed neutron emissions during active interrogation of uranium using a neutron generator.

摘要

目前迫切需要新的、更好的仪器和技术来检测和识别特殊核材料(SNM),即高浓缩铀和钚。改进仪器和技术的开发需要使用 SNM 本身进行实验,但 SNM 的供应非常有限。本文介绍了在美国能源部、国家核安全管理局核监测技术与核查联盟的框架下,在国家临界实验研究中心使用新仪器和技术对非机密、公斤级 SNM 物体进行实验的结果。这些实验的重点是使用原型探测器和技术,对质量在 3.3 至 13.8 公斤之间的 SNM 样品进行检测、识别和定位,包括钚和高浓缩铀。这项工作展示了使用最近开发的原型检测系统进行 SNM 检测和识别的能力。具体来说,我们展示了使用伽马射线和双粒子(快中子和伽马射线)成像技术对钚和铀物体进行被动检测和成像的新结果。我们还介绍了利用中子发生器对铀进行主动探测时延迟中子发射的新分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e2f8/10300126/14e39840cbc2/41598_2023_36171_Fig1_HTML.jpg

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