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High order fast neutron multiplicity measurement equations based on liquid scintillation detector

机译:基于液体闪烁探测器的高阶快中子多重测量方程

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摘要

Fast neutron multiplicity counting (FNMC) analysis method is a new nondestructive analysis method for nuclear materials. It uses a fast neutron detector array to detect the neutrons emitted by the sample. The quality of plutonium in the sample is obtained by recording the neutron coincidence counting of fast neutron multiplicity. At present, the first three multiplets widely studied including singlets, doublets and triplets can no longer meet the needs of the research. In this paper, The derivation process of fast neutron multiplicity measurement equation for liquid scintillation detector is studied in detail based on the basic principle, neutron counting method, by using the methods of the factorial moments, probability generating functions and parameter estimation method, and considering the influence of scattering crosstalk. Finally, the fast neutron multiplicity measurement equation including singlets, doublets, triplets, quadruplets and pentuplets are established according to the parameter estimation method and the two kinds of solution methods of this equation are given. The work in this paper lays a theoretical and analytical foundation for the research of fast neutron multiplicity measurement system based on liquid scintillation detector.
机译:快节中子多重计数(FNMC)分析方法是一种新的核材料的非破坏性分析方法。它使用快节奏探测器阵列来检测样品发出的中子。通过记录快节中子多重性的中子巧合计数来获得样品中钚的质量。目前,广泛研究的前三个多重包括单体,双峰和三胞胎可以不再满足研究的需求。本文通过使用阶乘矩,概率生成功能和参数估计方法,基于基本原理,中子计数方法,详细研究了液体闪烁检测器的快节中子多重测量方程的推导过程。散射串扰的影响。最后,根据参数估计方法建立包括单曲,双峰,三联网,四元铲和偏移的快节奏中的中子多重测量方程。本文的工作为基于液体闪烁探测器的快节中子多重测量系统进行了理论和分析基础。

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