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Advances in associated-particle neutron probe diagnostics for substance detection

机译:用于物质检测的关联粒子中子探针诊断技术的进展

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Abstract: The development and investigation of a small associated-particle sealed-tube neutron generator (APSTNG) shows potential to allow the associated-particle diagnostic method to be moved out of the laboratory into field applications. The APSTNG interrogates the inspected object with 14-MeV neutrons generated from the deuterium-tritium reaction and detects the alpha-particle associated with each neutron inside a cone encompassing the region of interest. Gamma-ray spectra of resulting neutron reactions identify many nuclides. Flight-times determined from detection times of the gamma-rays and alpha-particles can yield a separate course tomographic image of each identified nuclide, from a single orientation. Chemical substances are identified by comparing relative spectral line intensities with ratios of elements in reference compounds. The high-energy neutrons and gamma-rays penetrate large objects and dense materials. Generally, no collimators or radiation shielding are needed. Proof-of-concept laboratory experiments have been successfully performed for simulated nuclear, chemical warfare, and conventional munitions. Most recently, inspection applications have been investigated for radioactive waste characterization, presence of cocaine in propane tanks, and uranium and plutonium smuggling. Based on lessons learned with the present APSTNG system, an advanced APSTNG tube (along with improved high voltage supply and control units) is being designed and fabricated that will be transportable and rugged, yield a substantial neutron output increase, and provide sufficiently improved lifetime to allow operation at more than an order of magnitude increase in neutron flux. !5
机译:摘要:小型相关粒子密封管中子发生器(APSTNG)的开发和研究表明,有可能使相关粒子诊断方法从实验室移出现场应用。 APSTNG用氘-t反应生成的14-MeV中子询问被检查物体,并检测与包围感兴趣区域的圆锥体内每个中子相关的α粒子。产生的中子反应的伽马射线光谱识别出许多核素。根据伽马射线和α粒子的检测时间确定的飞行时间可以从单个方向生成每个已识别核素的单独的层析图像。通过将相对光谱线强度与参考化合物中元素的比例进行比较来识别化学物质。高能中子和伽马射线穿透大型物体和致密材料。通常,不需要准直器或辐射屏蔽。概念验证实验室实验已经成功地进行了模拟核,化学战和常规弹药的实验。最近,已经对检查应用进行了研究,包括放射性废物的表征,丙烷罐中可卡因的存在以及铀和p的走私。根据从目前的APSTNG系统获得的经验教训,正在设计和制造一种先进的APSTNG管(以及改进的高压电源和控制单元),该管可运输且坚固耐用,可显着增加中子输出,并提供足够的使用寿命,以延长使用寿命。允许以中子通量增加一个数量级以上的速度运行。 !5

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