Optical potential for the elastic scattering of 6Li projectile on 1p-shell nuclei

IF 1 4区 物理与天体物理 Q4 PHYSICS, NUCLEAR
Yongli Xu, Xinwu Su, Yinlu Han, Xiaojun Sun, Donghong Zhang, C. Cai
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引用次数: 0

Abstract

A set of global optical potential parameters describing the elastic scattering of 6Li projectile on 1p-shell nuclei is obtained by fitting the experimental data of elastic scattering angular distributions for 9Be, [Formula: see text]B, [Formula: see text]B, [Formula: see text]C, [Formula: see text]C, [Formula: see text]C, [Formula: see text]N, [Formula: see text]O and [Formula: see text]O targets with incident energies from 4.0,MeV to 210.0,MeV and with 6Li and 7Li targets from 2.0,MeV to 156.0,MeV. The comparison is performed between the results calculated using the derived optical potential and the existing experimental data. The calculations agree well with the experimental data in the whole energy region except from 20,MeV to 50,MeV at backward angles, where there is an upward trend for the experimental data of angular distributions. Besides, the inelastic scattering contributions of the first excited states are deduced by the present global optical potential. The results are also in good agreement with the experimental data. In order to improve the description of elastic scattering, the inelastic scattering contributions of the first excited states are considered in the calculations between 20 and 50,MeV. A satisfactory fit is obtained between them.
6Li弹丸在1p壳层核上弹性散射的光势
通过拟合9Be、[公式:见正文]B、[公式,见正文]B、[公式;见正文]C、[公式]见正文]C、[公式,[公式:见正文]入射能量为4.0,MeV至210.0,MeV的O靶和6Li和7Li靶的入射能量为2.0,MeV到156.0,MeV.将导出的光学势计算结果与现有实验数据进行了比较。计算结果与整个能量区的实验数据一致,除了在后角从20,MeV到50,MeV,其中角分布的实验数据有上升趋势。此外,由目前的全局光学势推导出第一激发态的非弹性散射贡献。结果也与实验数据吻合良好。为了改进对弹性散射的描述,在20和50MeV之间的计算中考虑了第一激发态的非弹性散射贡献。它们之间获得了令人满意的配合。
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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来源期刊
International Journal of Modern Physics E
International Journal of Modern Physics E 物理-物理:核物理
CiteScore
1.90
自引率
18.20%
发文量
98
审稿时长
4-8 weeks
期刊介绍: This journal covers the topics on experimental and theoretical nuclear physics, and its applications and interface with astrophysics and particle physics. The journal publishes research articles as well as review articles on topics of current interest.
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