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使用带有水切伦科夫中子探测器的Cf旋转法检测铅屏蔽高浓缩铀的紧凑型可运输系统。

Compact and transportable system for detecting lead-shielded highly enriched uranium using Cf rotation method with a water Cherenkov neutron detector.

作者信息

Tanabe Kosuke, Komeda Masao, Toh Yosuke, Kitamura Yasunori, Misawa Tsuyoshi, Tsuchiya Ken'ichi, Sagara Hiroshi

机构信息

Physics Section, National Research Institute of Police Science, 6-3-1, Kashiwanoha, Kashiwa-shi, Chiba, 277-0882, Japan.

Tokyo Institute of Technology, Ookayama, Meguro-ku, Tokyo, 152-8550, Japan.

出版信息

Sci Rep. 2024 Aug 13;14(1):18828. doi: 10.1038/s41598-024-69526-w.

Abstract

The global challenge of on-site detection of highly enriched uranium (HEU), a substance with considerable potential for unauthorized use in nuclear security, is a critical concern. Traditional passive nondestructive assay (NDA) techniques, such as gamma-ray spectroscopy with high-purity germanium detectors, face significant challenges in detecting HEU when it is shielded by heavy metals. Addressing this critical security need, we introduce an on-site detection method for lead-shielded HEU employing a transportable NDA system that utilizes the Cf rotation method with a water Cherenkov neutron detector. This cost-effective NDA system is capable of detecting 4.17 g of U within a 12 min measurement period using a Cf source of 3.7 MBq. Integrating this system into border control measures can enhance the prevention of HEU proliferation significantly and offer robust deterrence against nuclear terrorism.

摘要

现场检测高浓铀(HEU)是一项全球性挑战,高浓铀这种物质在核安全方面存在被非法利用的巨大可能性,是一个至关重要的问题。传统的被动无损检测(NDA)技术,如使用高纯锗探测器的伽马射线能谱分析技术,在检测被重金属屏蔽的高浓铀时面临重大挑战。为满足这一关键的安全需求,我们推出一种针对铅屏蔽高浓铀的现场检测方法,采用一种可运输的无损检测系统,该系统利用带有水切伦科夫中子探测器的Cf旋转法。这种经济高效的无损检测系统能够在12分钟的测量周期内,使用3.7 MBq的Cf源检测出4.17克铀。将该系统整合到边境管控措施中,可显著加强对高浓铀扩散的防范,并为核恐怖主义提供有力威慑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80b0/11322446/728555f7594a/41598_2024_69526_Fig1_HTML.jpg

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