首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Qualitative measurement of spatial shielding isotopics via Compton imaging neutron-induced gamma rays using 3-D CdZnTe detectors
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Qualitative measurement of spatial shielding isotopics via Compton imaging neutron-induced gamma rays using 3-D CdZnTe detectors

机译:使用3-D Cdznte探测器的Compton Imaging中子诱导的γ射线的空间屏蔽同位素的定性测量

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摘要

Characterization of shielding around special nuclear materials (SNMs) in unknown objects is important for homeland security, international safeguards and potential nuclear disarmament verification. Shielding modulates source photons and neutrons, complicating radiation-based SNM characterization, and indicates object purpose and guides response. Previous gamma-ray-based shielding detection algorithms only estimate effective shielding atomic number and areal thickness, complicating the characterization of compound shields comprised of multiple elements. Neutron-induced gamma rays, from inelastic scatter or capture, provide a complementary, isotope-specific shielding signal which can be localized using Compton imaging. Qualitative, angularly-resolved isotopic distributions in a compound shield were measured using polyethylene and polyvinyl chloride targets, excited via a single PuBe neutron source, and a 3-D, position-sensitive CdZnTe imaging spectrometer. Hydrogen capture gamma rays, which predominately originate from the polyethylene target, were well separated in angular space from chlorine capture gamma rays, originating in the polyvinyl chloride target, using Compton imaging. The described qualitative probe of spatial shielding isotopics can be immediately applied on any commercial gamma-ray imaging spectrometer without modification.
机译:在未知对象中围绕特殊核材料(SNMS)屏蔽的特征对于国土安全,国际保障和潜在的核裁军核查是重要的。屏蔽调制源光子和中子,使基于辐射的SNM表征复杂,并表示对象目的和指导响应。以前的基于伽马射线的屏蔽检测算法仅估计有效的屏蔽原子数和面积厚度,使具有多个元件组成的复合屏蔽的表征复杂化。中子诱导的γ射线,从非弹性散射或捕获,提供可以使用康普顿成像定位的互补的同位素特异性屏蔽信号。使用聚乙烯和聚氯乙烯靶标,通过通过单个耻骨中子源激发和3-D,位置敏感的CDZNTE成像光谱仪测量复合屏蔽中的定性,角度分离的同位素分布。氢捕获伽马射线,其主要来自聚乙烯靶,在来自氯捕获γ射线的角度空间中分离得很好,来自康普顿成像。所描述的空间屏蔽同位素的定性探针可以立即在任何商业伽马射线成像光谱仪上施加而无需修改。

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