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Source Correlated Prompt Neutron Activation Analysis for Material Identification and Localization

机译:源相关的瞬发中子活化分析,用于材料识别和定位

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This paper investigates the energy spectrum of photon signatures from an associated particle imaging deuterium tritium (API-DT) neutron generator interrogating shielded uranium. The goal is to investigate if signatures within the energy spectrum could be used to indirectly characterize shielded uranium when the neutron signature is attenuated. By utilizing the correlated neutron cone associated with each pixel of the API-DT neutron generator, certain materials can be identified and located via source correlated spectrometry of prompt neutron activation gamma rays. An investigation is done to determine if fission neutrons induce a significant enough signature within the prompt neutron-induced gamma-ray energy spectrum in shielding material to be useful for indirect nuclear material characterization. The signature deriving from the induced fission neutrons interacting with the shielding material was slightly elevated in polyethylene-shielding depleted uranium (DU), but was more evident in some characteristic peaks from the aluminum shielding surrounding DU.
机译:本文研究了来自相关粒子成像氘tri(API-DT)中子发生器询问屏蔽铀的光子签名的能谱。目的是研究当中子签名衰减时,能谱内的签名是否可用于间接表征屏蔽铀。通过利用与API-DT中子发生器的每个像素关联的相关中子锥,可以通过瞬发中子活化γ射线的源相关光谱法识别和定位某些材料。进行了一项调查以确定裂变中子是否在屏蔽材料中的瞬发中子诱发的伽马射线能谱内诱发了足够显着的信号,以用于间接核材料表征。来自诱发裂变中子与屏蔽材料相互作用的特征在聚乙烯屏蔽贫铀(DU)中略有升高,但在来自DU周围铝屏蔽的一些特征峰中更明显。

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