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An improved numerical method to compute neutron/gamma deexcitation cascades starting from a high spin state

机译:一种从高自旋态开始计算中子/γ灭活级联的改进数值方法

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Numerous nuclear processes involve the deexcitation of a compound nucleus through the emission of several neutrons, gamma-rays and/or conversion electrons. The characteristics of such a deexcitation are commonly derived from a total statistical framework often called "Hauser Feshbach" method. In this work, we highlight a numerical limitation of this kind of method in the case of the deexcitation of a high spin initial state. To circumvent this issue, an improved technique called the Fluctuating Structure Properties (FSP) method is presented. Two FSP algorithms are derived and benchmarked on the calculation of the total radiative width for a thermal neutron capture on U-238. We compare the standard method with these FSP algorithms for the prediction of particle multiplicities in the deexcitation of a high spin level of Ba-143. The gamma multiplicity turns out to be very sensitive to the numerical method. The bias between the two techniques can reach 1.5 gamma/cascade. Finally, the uncertainty of these calculations coming from the lack of knowledge on nuclear structure is estimated via the FSP method. (C) 2016 Elsevier B.V. All rights reserved.
机译:许多核过程都涉及通过几个中子,伽马射线和/或转换电子的发射来消除复合核的激发。取消激励的特征通常来自通常称为“ Hauser Feshbach”方法的总体统计框架。在这项工作中,我们强调了在高自旋初始状态去激励的情况下这种方法的数值限制。为了解决这个问题,提出了一种改进的技术,称为波动结构特性(FSP)方法。导出了两种FSP算法,并以U-238上的热中子俘获的总辐射宽度计算为基准。我们将标准方法与这些FSP算法进行比较,以预测Ba-143的高自旋水平去激磁中的粒子多重性。伽玛多样性对数值方法非常敏感。两种技术之间的偏差可以达到1.5 gamma /级联。最后,通过FSP方法估计了由于缺乏核结构知识而导致的这些计算的不确定性。 (C)2016 Elsevier B.V.保留所有权利。

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