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Detection of nuclear material with dual neutron — Gamma detector

机译:用双中子—伽马探测器探测核材料

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Gamma-ray signatures are generally used for detecting nuclear materials. It is difficult to distinguish gammas from backgrounds and innocent radiological materials, which can result in high false alarm rate. Dual neutron-gamma detectors for detecting illegally trafficked nuclear materials have a potential to reduce the false alarm rate. Elpasolite scintillator Cs2LiYCl6 (CLYC) doped with Ce3+ presented in this work can detect both neutrons and gammas efficiently. In this work we will discuss results to show the ability of CLYC to detect thermal neutrons efficiently with very high gamma discrimination rate. Excellent energy resolution that can be obtained with CLYC is as good as 3.9 % for 662 keV (FWHM). On the other hand, the presence of 6Li which has an acceptable cross-section for thermal neutron capture, allows this material to detect thermal neutrons as well. In the energy spectrum, the full energy thermal neutron peak typically appears above 3 MeV gamma-equivalent energy (GEE). Thus very effective pulse height discrimination (PHD) can be implemented with these materials by rejecting gamma-ray events below 3 MeV. Apart from PHD, using pulse-shape discrimination (PSD) it is also possible to separate neutron and gamma events. Preliminary measurements using NIM modules were performed, the method frequently used for organic scintillators to estimate the gamma rejection ratio (GRR). Moreover, we have also tested this scintillator with Si-based optical sensors, such as avalanche photo diodes (APD), and solid state photo multipliers (SSPM). The results clearly show that CLYC can be used for thermal neutron detection with these devices. This gives the opportunity for developing efficient, compact, and low-cost radiation detectors that can be deployed in large numbers.
机译:伽马射线签名通常用于检测核材料。难以区分伽玛从背景和无辜的放射线材料,这可能导致高误报率。用于检测非法贩运的核材料的双中子伽马探测器有可能降低误报率。在本工作中提供的CE 3 + 掺杂有CE 3 + 的ELPASOLITE闪烁体CS 6 (CLYC)可以有效地检测中子和伽马。在这项工作中,我们将讨论结果,以显示CLYC以非常高的伽马歧视率有效地检测热中子的能力。通过CLYC获得的优异能量分辨率可以高达662 keV(FWHM)的3.9%。另一方面,具有用于热中子捕获的可接受的横截面的 6 Li的存在允许这种材料也检测热中子。在能谱中,全能量热中子峰通常出现在3meV伽马等同能量(GEE)以上。因此,通过拒绝低于3MeV的伽马射线事件,可以通过这些材料来实现非常有效的脉冲高度辨别(PHD)。除了PHD,还可以使用脉冲形状辨别(PSD),也可以分离中子和伽马事件。进行使用NIM模块的初步测量,该方法经常用于有机闪烁体来估计伽马抑制比(GRR)。此外,我们还测试了这种闪烁体的基于SI的光学传感器,例如雪崩照片二极管(APD)和固态照片乘法器(SSPM)。结果清楚地表明Clyc可用于使用这些器件进行热中子检测。这为可以以大量部署的高效,紧凑和低成本的辐射探测器提供了机会。

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