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Multiple scattering Compton camera with neutron activation for material inspection

机译:具有中子活化功能的多重散射康普顿相机,用于材料检查

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摘要

We designed a multiple scattering Compton camera (MSCC) based on a lanthanum bromide (LaBr_3:Ce) scintillator to detect neutron-activated prompt gamma-rays for material inspection. The system parameters such as detector thickness and inter-detector distances were optimized on the basis of figure of merit (FOM). The FOM was maximized when the inter-detector distance and detector thickness were 18 cm and 1.5 cm, respectively. Under the optimized conditions, energy spectra and spatial images were obtained to identify various substances, and the results matched well with theoretical data. The probability of multiple Compton scattering was higher than that of conventional Compton scattering at high energies (~MeV), which proved the effectiveness of MSCC to detect prompt gamma-rays. Simulations with realistic conditions showed the feasibility of using the MSCC investigate of materials in field applications.
机译:我们设计了基于溴化镧(LaBr_3:Ce)闪烁体的多重散射康普顿相机(MSCC),以检测中子激活的瞬发伽马射线,以进行材料检查。基于品质因数(FOM)对系统参数(例如探测器厚度和探测器间距离)进行了优化。当检测器间距离和检测器厚度分别为18 cm和1.5 cm时,FOM最大化。在优化的条件下,获得了能谱和空间图像以识别各种物质,结果与理论数据吻合良好。在高能量(〜MeV)下,多次康普顿散射的概率高于常规康普顿散射,这证明了MSCC检测快速伽马射线的有效性。在实际条件下进行的仿真表明,使用MSCC在现场应用中研究材料的可行性。

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