130 兆电子伏各种原子核的阿尔法散射比较研究:微观势能和耦合通道计算

A. Ibraheem, F. Alasmary, B. Alshahrani, M. Karakoç, Shigetaka Hamada, M. N. El-Hammamy
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引用次数: 0

摘要

利用能量密度函数(EDF)理论产生的两种不同的微观实势、单折叠簇模型以及伍兹-撒克逊现象学势,研究了 130 MeV 能量下不同重离子靶核(包括 12C、16O、24Mg、28Si 和 40Ca)上α射弹的弹性和非弹性散射截面的角度分布。EDF 首次考虑了一种新的参数化,为了使归一化系数趋于统一,有必要考虑对计算出的实势进行修正。对各种低洼态进行了耦合通道计算,通过非弹性散射截面拟合,提取了上述模型的变形长度最佳拟合值,并与以前的工作值进行了比较。研究了总反应截面以及实体积积分和虚体积积分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative study of alpha scattering from various nuclei at 130 MeV: Microscopic potentials and coupled channel calculations
The angular distributions of the elastic and inelastic scattering cross sections of alpha projectiles on different heavy ion target nuclei including 12C, 16O, 24Mg, 28Si and 40Ca at energy of 130 MeV have been studied using two different microscopic real potentials generated by the energy density functional (EDF) theory, and single folding cluster model as well as phenomenological Woods-Saxon potentials. A new parameterization was considered for the first time by EDF and to make the normalization coefficient tend to unity, it is necessary to consider correction to the calculated real potential. Coupled channel calculations for various low-lying states were performed, and the best fit values for the deformation length with the above models were extracted by fitting the inelastic scattering cross section and compared to previous work values. The total reaction cross section, as well as the real and imaginary volume integrals, have been studied.
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