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The neutron-gamma Feynman variance to mean approach: Gamma detection and total neutron-gamma detection (theory and practice)

机译:中子伽马费曼方差平均法:伽马探测和总中子伽马探测(理论和实践)

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Two versions of the neutron-gamma variance to mean (Feynman-alpha method or Feynman-Y function) formula for either gamma detection only or total neutron-gamma detection, respectively, are derived and compared in this paper. The new formulas have particular importance for detectors of either gamma photons or detectors sensitive to both neutron and gamma radiation. If applied to a plastic or liquid scintillation detector, the total neutron-gamma detection Feynman-Y expression corresponds to a situation where no discrimination is made between neutrons and gamma particles. The gamma variance to mean formulas are useful when a detector of only gamma radiation is used or when working with a combined neutron-gamma detector at high count rates. The theoretical derivation is based on the Chapman-Kolmogorov equation with the inclusion of general reactions and corresponding intensities for neutrons and gammas, but with the inclusion of prompt reactions only. A one energy group approximation is considered. The comparison of the two different theories is made by using reaction intensities obtained in MCNPX simulations with a simplified geometry for two scintillation detectors and a ~(252)Cf-source. In addition, the variance to mean ratios, neutron, gamma and total neutron-gamma are evaluated experimentally for a weak ~(252)Cf neutron-gamma source, a ~(137)Cs random gamma source and a ~(22)Na correlated gamma source. Due to the focus being on the possibility of using neutron-gamma variance to mean theories for both reactor and safeguards applications, we limited the present study to the general analytical expressions for Feynman-alpha formulas.
机译:本文推导并比较了两种版本的中子-伽玛方差平均法(费曼-阿尔法或费曼-Y函数)公式,它们仅用于伽马探测或用于总中子伽马探测。新公式对于伽马光子探测器或对中子和伽马辐射均敏感的探测器特别重要。如果将其应用于塑料或液体闪烁探测器,则总中子伽马探测Feynman-Y表达式对应于在中子和伽马粒子之间没有区别的情况。当仅使用伽马辐射探测器或使用组合中子-伽马探测器以高计数率工作时,均值伽马方差公式将非常有用。理论推导基于Chapman-Kolmogorov方程,其中包括一般反应以及中子和γ的相应强度,但仅包括快速反应。考虑一个能量组近似。两种不同理论的比较是通过使用在MCNPX模拟中获得的反应强度进行简化的,该反应强度用于两个闪烁检测器和〜(252)Cf源。此外,对弱的〜(252)Cf中子伽马射线源,〜(137)Cs随机伽马射线源和〜(22)Na相关的实验评估了均值,中子,γ和总中子伽马的方差与均值比。伽玛源。由于关注于使用中子-伽玛方差来表示反应堆和保障应用程序的理论的可能性,因此我们将本研究限制为费曼-α公式的一般分析表达式。

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