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Fast neutron tomography with real-time pulse-shape discrimination in organic scintillation detectors

机译:有机闪烁探测器中具有实时脉冲形状识别的快速中子层析成像

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摘要

A fast neutron tomography system based on the use of real-time pulse-shape discrimination in 7 organic liquid scintillation detectors is described. The system has been tested with a californium-252 source of dose rate 163 μSv/hr at 1 m and neutron emission rate of 1.5×107 per second into 4π and a maximum acquisition time of 2 hours, to characterize two 100 × 100 × 100 mm concrete samples. The first of these was a solid sample and the second has a vertical, cylindrical void. The experimental data, supported by simulations with both Monte Carlo methods and MATLAB ®, indicate that the presence of the internal cylindrical void, corners and inhomogeneities in the samples can be discerned. The potential for fast neutron assay of this type with the capability to probe hydrogenous features in large low-Z samples is discussed. Neutron tomography of bulk porous samples is achieved that combines effective penetration not possible with thermal neutrons in the absence of beam hardening.
机译:描述了一种基于中子实时闪烁形状鉴别的快速中子层析成像系统,该系统在7种有机液体闪烁检测器中得到了应用。该系统已经在1m的剂量率163μSv/ hr的-252辐射源和每秒1.5×107的中子发射速率转化为4π的条件下进行了测试,最大采集时间为2小时,以表征两个100×100×100毫米混凝土样品。其中第一个是固体样品,第二个具有垂直的圆柱形空隙。由蒙特卡洛方法和MATLAB®进行的仿真支持的实验数据表明,可以辨别样品中内部圆柱孔,拐角和不均匀性的存在。讨论了这种快速中子测定具有探测大型低Z样品中氢特征的潜力。实现了散装多孔样品的中子层析成像,该成像结合了在没有束硬化的情况下热中子无法实现的有效穿透。

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