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A new fast neutron multiplicity analysis method based on scintillators for special nuclear material measurements

机译:基于闪烁体的特殊核材料测量新的快速中子多重分析方法

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A new neutron multiplicity analysis method for uranium samples with liquid scintillators is introduced. An active well-type fast neutron multiplicity counter has been built, which consists of four BC501A liquid scintillators, a n/γ discrimination module MPD-4, a multi-stop time to digital convertor MCS6A, and two Am-Li sources. A mathematical model is built to symbolize the detection processes of fission neutrons. Based on this model, equations in the form of R=F*P*Q*T could be achieved, where F indicates the induced fission rate by interrogation sources, P indicates the transfer matrix determined by multiplication process, Q indicates the transfer matrix determined by detection efficiency, T indicates the transfer matrix determined by signal recording process and crosstalk in the counter. Unknown parameters about the item are determined by the solutions of the equations. A ~(252)Cf source and some low enriched uranium items have been measured. The feasibility of the method is proven by its application to the data analysis of the experiments.
机译:介绍了具有液体闪烁体的铀样品的新中子多重分析方法。建立了一个有源良好的快速中子倍数计数器,该计数器由四个BC501A液体闪烁体,N /γ辨别模块MPD-4,数字转换器MCS6A和两个AM-LI源的多停机时间组成。建立了数学模型以象征裂变中子的检测过程。基于该模型,可以实现r = f * p * q * t形式的方程,其中f表示通过询问源指示诱导的裂变率,P表示通过乘法过程确定的传输矩阵,q表示传输矩阵确定通过检测效率,T表示通过信号记录过程和计数器中的串扰确定的传输矩阵。关于该项目的未知参数由方程的解决方案确定。 A〜(252)CF源和一些低富集的铀物品已经测量。通过其应用于实验的数据分析,证明了该方法的可行性。

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