Charge polarization calculated with a microscopic model for the fission fragments of U-236

S. Ebata, Shin Okumura, C. Ishizuka, Satoshi Chiba
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引用次数: 1

Abstract

We investigated theoretical methods to estimate the charge polarization of the fission fragments. The method is based on the microscopic mean-field model with the nucleon degree of freedom, and is represented in the three-dimensional coordinate space for dealing with any nuclear deformation. We employed the Skyrme effective interaction for the calculations and uranium-236 as a target nucleus. We reported static and dynamic methods in which the potential energy surface of the fissioning nucleus concerning the quadrupole and octupole deformations are used. Although the static method deduced the charge polarization which indicates the nuclei with the magic number and the octupole deformation, the quantities are not consistent with the existing data library (Wahl’s systematics). The dynamic method with the iso-energy initial condition on the potential energy surface showed the finite charge polarization of light and heavy fission fragments which is consistent with the data library. Furthermore, it indicates that the charge polarization has energy dependence of the initial states of the dynamic method.
用U-236裂变碎片的微观模型计算电荷极化
我们研究了估计裂变碎片电荷极化的理论方法。该方法基于具有核自由度的微观平均场模型,并在三维坐标空间中表示,以处理任何核变形。我们使用Skyrme有效相互作用进行计算,并将铀-236作为目标核。我们报道了静态和动态方法,其中使用了涉及四极和八极变形的裂变核势能面。静态方法推导出的电荷极化值表示具有幻数的原子核和八极变形,但与现有的Wahl系统数据库不一致。在势能面等能初始条件下的动力学方法显示出轻裂变碎片和重裂变碎片的有限电荷极化,这与数据库一致。此外,还表明电荷极化与动态方法的初始状态有能量依赖性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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