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Neutron Resonance Radiography for Security Applications

机译:用于安全应用的中子共振射线照相

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摘要

Fast Neutron Resonance Radiography (NRR) has been devised as an elemental imaging method, with applications such as contraband detection and mineral analysis. In the NRR method, a 2-D elemental mapping of hydrogen, carbon, nitrogen, oxygen and the sum of other elements is obtained from fast neutron radiographic images taken at different neutron energies chosen to cover the resonance cross section features of one or more elements. Images are formed using a lens-coupled plastic scintillator-CCD combination. In preliminary experiments, we have produced NRR images of various simulants using a variable energy neutron beam based on the Li(p, n)Be reaction and a variable energy proton beam. In order to overcome practical limitations to this method, we have studied NRR imaging using the D-D reaction at a fixed incident D energy and scanning through various neutron energies by using the angular variation in neutron energy. The object-detector assembly rotates around the neutron source and different energy (2-6MeV) neutrons can be obtained at different angles from a D-D neutron source. The radiographic image provides a 2-D mapping of the sum of elemental contents (weighted by the attenuation coefficients). Transmission measurements taken at different neutron energies (angles) form a set of linear equations, which can then be solved to map individual elemental contents.
机译:快速中子共振射线照相术(NRR)已被设计为一种元素成像方法,其用途包括违禁品检测和矿物分析。在NRR方法中,氢,碳,氮,氧和其他元素总和的二维元素映射是从在不同中子能量下拍摄的快速中子射线照相图像中获得的,这些图像被选择来覆盖一个或多个元素的共振截面特征。使用透镜耦合的塑料闪烁体-CCD组合形成图像。在初步实验中,我们使用基于Li(p,n)Be反应的可变能量中子束和可变能量质子束,生成了各种模拟物的NRR图像。为了克服该方法的实际局限性,我们研究了在固定入射D能量下使用D-D反应并通过利用中子能量的角度变化扫描各种中子能量的NRR成像。物体探测器组件围绕中子源旋转,并且可以从D-D中子源以不同角度获得不同能量(2-6MeV)的中子。射线照相图像提供元素含量总和的二维映射(由衰减系数加权)。在不同的中子能量(角度)下进行的传输测量形成了一组线性方程,然后可以求解这些线性方程以映射各个元素的含量。

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