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首页> 外文期刊>Radiation Physics and Chemistry >Feasibility study of using a compact deuterium-deuterium (D-D) neutron generator for energy-selective transmission tomography
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Feasibility study of using a compact deuterium-deuterium (D-D) neutron generator for energy-selective transmission tomography

机译:使用Compact Deuterium-Deuterium(D-D)中子发生器进行能量选择传输断层扫描的可行性研究

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This article presents a feasibility study of using a compact deuterium-deuterium (D-D) fast neutron generator for element-sensitive fast neutron tomography. The energy range of such neutron generators is quasi-monoenergetic from about 2.2-2.8 MeV, depending on the angle of emission. Unlike X-rays and gamma photons, fast neutron cross-sections have unique energy sensitivity in this range depending on the nuclide, making differentiation of materials in principle possible by performing tomographic attenuation measurements at multiple energies. In this context, detailed neutron spectrum models were created and attenuation versus emission angle data were simulated for several uniform test samples. An automated mechanical apparatus and plastic scintillator fast neutron detectors were used to interrogate these samples over the full range of emission angles around a custom neutron generator located at the Paul Scherrer Institute. The experimental attenuation data were compared with simulations. Simulations and experiments were found to be generally in good agreement, demonstrating the fundamental feasibility of the approach.
机译:本文介绍了使用Compact Deuterium-Deuterium(D-D)快速中子发生器进行元件敏感快中子断层扫描的可行性研究。根据发射角度,这种中子发生器的能量范围为约2.2-2.8 mev的准单元素。与X射线和伽马光子不同,根据核素,快节奏在该范围内具有独特的能量灵敏度,这是通过在多个能量下进行断层摄影衰减测量来实现材料的分化。在本文中,创建了详细的中子谱模型,并模拟了几种均匀测试样品的衰减与发射角度数据。使用自动机械设备和塑料闪烁体快上中子探测器来询问这些样品在位于Paul Scherrer Institute的定制中子发电机周围的全部排放角度。将实验衰减数据与模拟进行了比较。发现模拟和实验通常很好,展示了这种方法的基本可行性。

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