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A combined neutron and gamma-ray multiplicity counter based on liquid scintillation detectors

机译:基于液体闪烁探测器的组合中子和伽马射线多重度计数器

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Multiplicity counters for neutron assay have been extensively used in materials control and accountability for nonproliferation and nuclear safeguards. Typically, neutron coincidence counters are utilized in these fields. In this work, we present a measurement system that makes use not only of neutron (n) multiplicity counting but also of gamma-ray (y) multiplicity counting and the combined higher-order multiples containing both neutrons and gamma rays. The benefit of this approach is in using both particle types available from the sample, leading to a reduction in measurement times compared with single-particle measurements. We present measurement results of n, y, nn, ny, yy, nnn, nny, nyy and yyy multiples emitted by Mixed-Oxide (MOX) samples measured at Idaho National Laboratory (INL). The MOX measurement is compared to initial validation of the detection system done using a ~(252)Cf source. The dual radiation measuring system proposed here uses extra measurables to improve the statistics when compared to a neutron-only system and allows for extended analysis and interpretation of sample parameters. New challenges such as the effect of very high intrinsic gamma-ray sources in the case of MOX samples are discussed. Successful measurements of multiple rates can be performed also when using high-Z shielding.
机译:用于中子测定的多重计数器已广泛用于材料控制和核不扩散和核保障措施的责任制。通常,在这些领域中使用中子符合计数器。在这项工作中,我们提出了一种测量系统,该系统不仅利用中子(n)的多重性计数,还利用伽马射线(y)的多重性计数以及包含中子和伽马射线的组合高阶倍数。这种方法的好处是可以使用样品中可用的两种颗粒类型,与单颗粒测量相比,可以减少测量时间。我们提供由爱达荷州国家实验室(INL)测得的混合氧化物(MOX)样品发射的n,y,nn,ny,yy,nnn,nny,nyy和yyy倍数的测量结果。将MOX测量值与使用〜(252)Cf来源完成的检测系统的初始验证进行比较。与仅使用中子的系统相比,此处提出的双辐射测量系统使用额外的可测量方法来改善统计数据,并允许扩展分析和解释样品参数。讨论了新挑战,例如在MOX样品中非常高的固有伽玛射线源的影响。当使用高Z屏蔽时,也可以成功测量多个速率。

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