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Active detection of small quantities of shielded highly-enriched uranium using low-dose 60-kev neutron interrogation

机译:使用低剂量60-kev中子询问主动检测少量的屏蔽高浓铀

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Active interrogation with low-energy neutrons provides a search technique for highly-enriched uranium concealed in cargo. We describe the technique and show initial results using a low-dose 60-keV neutron beam. This technique produces a clear induced fission signal in the presence of small quantities of ~(235)LR The technique has been validated with low-Z and high-Z cargo materials. The technique uses a forward-directed beam of 60-keV neutrons to induce fission in ~(235)U. Detection of the fast fission neutrons with pulse-shape discriminating scintillators is then the signature for ~(235)U. The beam of neutrons is generated with a 1.93 MeV proton beam impinging on a natural lithium target. The proton beam is produced by a radio-frequency quadrupole LINAC. The 60 keV neutron beam is forward-directed because the ~7Li(p,n) reaction is just above threshold for a proton energy of 1.93 MeV.
机译:低能量中子的主动询问为隐藏在货物中的高浓缩铀提供了一种搜索技术。我们描述了该技术,并显示了使用低剂量60keV中子束的初步结果。在少量〜(235)LR的存在下,该技术会产生清晰的诱发裂变信号。该技术已通过低Z和高Z货物材料进行了验证。该技术使用60keV中子的前向光束在〜(235)U中引起裂变。然后,用脉冲形状鉴别闪烁体检测快裂变中子是〜(235)U的特征。中子束由撞击自然锂靶的1.93 MeV质子束产生。质子束由射频四极杆LINAC产生。 60 keV中子束是正向的,因为〜7Li(p,n)反应刚好高于1.93 MeV质子能量的阈值。

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