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利用反中微子探测器来保护未来的核反应堆免受转移。

Employing antineutrino detectors to safeguard future nuclear reactors from diversions.

机构信息

Nuclear and Radiological Engineering Program, Georgia Institute of Technology, Atlanta, GA, 30332, USA.

University of California, Berkeley, CA, 94720, USA.

出版信息

Nat Commun. 2019 Aug 6;10(1):3527. doi: 10.1038/s41467-019-11434-z.

Abstract

The Non-Proliferation Treaty and other non-proliferation agreements are in place worldwide to ensure that nuclear material and facilities are used only for peaceful purposes. Antineutrino detectors, sensitive to reactor power and fuel changes, can complement the tools already at the disposal of international agencies to safeguard nuclear facilities and to verify the States' compliance with the agreements. Recent advancement in these detectors has made it possible to leverage them to reduce the likelihood of an undetected diversion of irradiated nuclear material. Here we show the sensitivity of antineutrino monitors to fuel divergence from two reactor types: a traditional light-water reactor and an advanced sodium-cooled reactor design, a likely candidate for future deployment. The analysis demonstrates that a variety of potential diversion scenarios can be detected by such a system. We outline recent developments in monitoring capabilities and discuss their potential security implications to the international community.

摘要

《不扩散核武器条约》和其他不扩散协议在全球范围内发挥作用,以确保核材料和设施仅用于和平目的。反中微子探测器对反应堆功率和燃料变化敏感,可以补充国际机构已经拥有的工具,以保障核设施安全,并核查各国是否遵守协议。这些探测器的最新进展使得利用它们来降低未被发现的放射性核材料转移的可能性成为可能。在这里,我们展示了反中微子监测器对两种反应堆类型的燃料偏离的灵敏度:传统的轻水反应堆和先进的钠冷反应堆设计,这是未来部署的一个可能的候选者。该分析表明,这样的系统可以检测到各种潜在的转移情况。我们概述了监测能力的最新发展,并讨论了它们对国际社会的潜在安全影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a53/6684554/d45f9ca871ae/41467_2019_11434_Fig1_HTML.jpg

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