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Neutron and gamma-ray cross-correlation measurements of MOX fuel using liquid scintillators

机译:使用液体闪烁体测量MOX燃料的中子和伽马射线互相关

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The detection of special nuclear material (SNM) is a very difficult problem: typically, the signals are weak thus difficult to distinguish from the background and in many practical applications additional shielding can be expected. In order to detect SNM more accurately, new methods to isolate the source signal are needed. Using cross-correlation functions it may be possible to identify the time-correlated particles from fission events above the background. To examine this feasibility, measurements were performed on 1-kg MOX fuel samples, a 252Cf source, and an AmBe source. Using pulse shape discrimination the particle types were isolated and the individual correlation contributions were determined. By comparing the (n, n) peak of the correlation curves a distinct difference is observed between a spontaneous fission source and an (α, n) source.
机译:特殊核材料(SNM)的检测是一个非常棘手的问题:通常,信号微弱,因此很难与背景区分开,在许多实际应用中,可以预期会有额外的屏蔽。为了更准确地检测SNM,需要隔离源信号的新方法。使用互相关函数,可以从背景以上的裂变事件中识别出时间相关的粒子。为了检验这种可行性,对1千克MOX燃料样品, 252 Cf源和AmBe源进行了测量。使用脉冲形状判别法分离颗粒类型并确定各个相关性贡献。通过比较相关曲线的(n,n)峰,可以观察到自发裂变源与(α,n)源之间的明显差异。

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