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Experimental evaluation of the extended Dytlewski-style dead time correction formalism for neutron multiplicity counting

机译:扩展的Dytlewski型空载时间校正形式对中子多重计数的实验评估

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Over the past few decades, neutron multiplicity counting has played an integral role in Special Nuclear Material (SNM) characterization pertaining to nuclear safeguards. Current neutron multiplicity analysis techniques use singles, doubles, and triples count rates because a methodology to extract and dead time correct higher order count rates (i.e. quads and pents) was not fully developed. This limitation is overcome by the recent extension of a popular dead time correction method developed by Dytlewski. This extended dead time correction algorithm, named Dytlewski-Croft-Favalli (DCF), is detailed in reference Croft and Favalli (2017), which gives an extensive explanation of the theory and implications of this new development. Dead time corrected results can then be used to assay SNM by inverting a set of extended point model equations which as well have only recently been formulated. The current paper discusses and presents the experimental evaluation of practical feasibility of the DCF dead time correction algorithm to demonstrate its performance and applicability in nuclear safeguards applications. In order to test the validity and effectiveness of the dead time correction for quads and pents,~(252)Cf and SNM sources were measured in high efficiency neutron multiplicity counters at the Los Alamos National Laboratory (LAND and the count rates were extracted up to the fifth order and corrected for dead time. In order to assess the DCF dead time correction, the corrected data is compared to traditional dead time correction treatment within INCC. The DCF dead time correction is found to provide adequate dead time treatment for broad range of count rates available in practical applications.
机译:在过去的几十年中,中子多重计数在与核保障有关的特殊核材料(SNM)表征中发挥了不可或缺的作用。当前的中子多重性分析技术使用单,双和三倍计数率,因为尚未完全开发出提取和空载时间校正较高阶计数率(即四边形和五角形)的方法。 Dytlewski开发的流行的停滞时间校正方法最近得到扩展,克服了这一限制。这种扩展的停滞时间校正算法名为Dytlewski-Croft-Favalli(DCF),在参考Croft和Favalli(2017)中进行了详细介绍,该算法对这一新开发的理论和含义进行了详尽的解释。死区时间校正结果然后可以通过反转一组扩展点模型方程式而用于分析SNM,这些扩展方程式方程式也是最近才制定的。本文讨论并提出了DCF停滞时间校正算法的实际可行性的实验评估,以证明其性能和在核保障应用中的适用性。为了测试四边形和五边形的停滞时间校正的有效性和有效性,在洛斯阿拉莫斯国家实验室(LAND)的高效中子多重计数器中测量了〜(252)Cf和SNM源(LAND,并提取了为了评估DCF死区时间校正,将校正后的数据与INCC内的传统死区时间校正处理进行比较,发现DCF死区时间校正可为广泛范围的DCF提供足够的死区时间处理。计算实际应用中可用的速率。

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