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Detection of Special Nuclear Materials with Tagged Neutrons

机译:用标记中子检测特殊核材料

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The Associated Particle Technique can be used to detect Special Nuclear Materials in cargo containers. A DT neutron generator, based on the ~3H(~2H,n)a fusion reaction, produces 14 MeV neutrons which are tagged both in direction and time with an embedded alpha detector. Prompt neutrons and gamma rays emitted during neutron-induced fissions are detected by plastic scintillators, in coincidence with the alpha particle. Nuclear materials are differentiated from non-nuclear materials and cross-talk events using high multiplicity coincidences. The data acquisition electronics is made of compact FPGA boards. Experiments performed with a mock-up of the measurement system are reported and compared to calculations to validate numerical simulation and post-processing tools. Measurements have been performed with different targets made of iron, lead, or uranium, placed in metallic or wood cargo matrixes. The performances of a full scale cargo container inspection system, with a larger number of detectors optimized for container inspection, are also studied by numerical simulation. Random background due to neutrons which are not correlated with an alpha particle, counting statistics, time and energy resolutions of the data acquisition system, are all taken into account to model the measurements as realistically as possible. A wide range of inspections, with the suspicious item in different positions in different cargo matrixes, have been studied.
机译:伴随粒子技术可用于检测集装箱专用核材料。甲DT中子发生器,基于所述〜3H(〜2H,N)的融合反应,产生其在方向和时间与嵌入式阿尔法探测器标记既14MeV的中子。期间中子诱发裂变发出提示的中子和伽玛射线由塑料闪烁体检测中,与α粒子巧合。核材料使用高多重巧合非核材料和串扰事件的分化。数据采集​​电子器件的小型化FPGA板。与模拟式测量系统的执行的实验报告并与计算验证数值模拟和后处理工具。测量已与由铁,铅,或铀的对象不同,放置在金属或木质货物矩阵进行。满刻度货物集装箱检查系统的性能,具有用于容器检查优化检测器的数量较多,也可以通过数值模拟研究。由于其不与α粒子相关中子,计数统计,时间和数据采集系统的能量分辨率随机背景,都考虑到测量尽可能真实地模拟。大范围的检查,以在不同的货物矩阵不同位置的可疑物品,进行了研究。

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