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Detecting Neutrons Outside of Reactor Shielding: Prospects for Stand-Off Reactor Monitoring

机译:在反应堆屏蔽层之外检测中子:停堆反应堆监测的前景

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There is considerable interest in the nuclear safeguards community to develop instruments and techniques for the purposes of detecting undeclared nuclear material and activities. This paper discusses a potential option for detecting the establishment of nuclear fuel cycle activities from their process emanations, by large-area neutron detectors placed at 10 to 100 m stand-off distances outside reactor shielding. It is shown that with commercially available large area neutron detector technology, neutrons can be detected outside reactor shielding; their correlation with reactor power and changes in fissile isotopic composition of the reactor core are currently being investigated. The method promises to provide information complementary to existing reactor monitoring by detecting antineutrinos emitted by the reactor, also to monitor reactor power and changes in isotopic composition. The technique with neutron detection possesses some significant advantages, such as providing signal to background ratio in the detection count rate that can be orders of magnitude greater than is presently available with antineutrino detection. The required neutron detector technology is also considerably more compact and economical than current antineutrino detector implementations. The presentation will demonstrate the neutron detection method with data acquired in proximity to heavy water reactors in Canada.
机译:核保障监督界对开发用于检测未申报的核材料和核活动的文书和技术有相当大的兴趣。本文讨论了一种潜在的选择,即通过将大面积的中子探测器放置在反应堆屏蔽之外10到100 m的相距距离处,从其过程发出的信号中检测核燃料循环活动的建立。结果表明,利用可商购的大面积中子探测器技术,可以在反应堆屏蔽层之外探测到中子。目前正在研究它们与反应堆功率的相关性以及反应堆堆芯裂变同位素组成的变化。该方法有望通过检测反应堆发出的反中微子来提供与现有反应堆监测互补的信息,还可以监测反应堆功率和同位素组成的变化。具有中子检测的技术具有一些显着优势,例如以检测计数率提供信噪比,可以比目前抗中微子检测的信噪比大几个数量级。所需的中子探测器技术也比当前的反中微子探测器实现方案更加紧凑和经济。演讲将通过加拿大重水反应堆附近的数据展示中子探测方法。

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