7Li+58Ni的弹性散射现象学和微观分析

IF 1.2 4区 物理与天体物理 Q3 PHYSICS, MULTIDISCIPLINARY
N. Alsaif, Shigetaka Hamada, M. El-Azab Farid, B. M. Alotaibi, M. Alotiby, A. Ibraheem
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引用次数: 0

摘要

通过研究7Li弹在58Ni核场中分裂成t+α团簇结构的作用,利用不同的唯象和微观势,研究了7Li+58Ni弹性散射系统在能量为13MeV至42MeV时的可用实验角分布。利用圣保罗电位的数据分析表明,为了重现数据,实际折叠电位的强度必须降低约36%。而利用具有和不具有重排项的双折叠CDM3Y6电势的数据分析显示,电势强度需要分别降低约63%和62%。应用基于7Li的t+α簇结构的簇折叠模型来再现所考虑的数据。获得了类似的结果,表明有必要将实际团簇折叠势能降低约49%。据报道,不同实施电位的电位强度降低支持了强烈的7Li分解影响。最后,应用全微观连续体离散耦合通道方法,在再现所考虑的数据方面取得了巨大成功。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Elastic scattering of 7Li+58Ni: a phenomenological and microscopic analysis
Motivating by examining the break-up effect of 7Li projectile into t + α cluster structure in the field of 58Ni nucleus, the available experimental angular distributions for 7Li + 58Ni elastic scattering system at energies ranging from 13 and up to 42 MeV are studied utilizing different phenomenological as well as microscopic potentials. Data analysis utilizing the Sao Paulo potential revealed that in order to reproduce the data, the strength of the real folded potential had to be reduced by ~ 36 %. While, data analysis utilizing the double folding CDM3Y6 potential with and without the rearrangement term revealed that the potential strength needed to be reduced by ~ 63 and 62 %, respectively. Cluster folding model based on the t + α cluster structure for 7Li is applied to reproduce the considered data. Similar results were obtained showing the necessity to reduce real cluster folding potential strength by about 49 %. The reported reduction in potential strength from the different implemented potentials supports the strong 7Li break-up impact. Finally, the full microscopic continuum discretized coupled channels approach is applied with a great success in reproducing the considered data.      
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来源期刊
Revista Mexicana De Fisica
Revista Mexicana De Fisica 物理-物理:综合
CiteScore
2.20
自引率
11.80%
发文量
87
审稿时长
4-8 weeks
期刊介绍: Durante los últimos años, los responsables de la Revista Mexicana de Física, la Revista Mexicana de Física E y la Revista Mexicana de Física S, hemos realizado esfuerzos para fortalecer la presencia de estas publicaciones en nuestra página Web ( http://rmf.smf.mx).
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