Study of the nuclear structure of some exotic nuclei using nonrelativistic and relativistic mean-field methods

A. Allami, A. Alzubadi
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引用次数: 1

Abstract

The nuclear shell model with the Skyrme–Hartree–Fock (SHF), as a nonrelativistic approach, and the Relativistic Hartree–Fock–Bogoliubov (RHFB) methods have been used to study the nuclear structure of some exotic nuclei at the proton and neutron drip lines. Different Skyrme parametrizations, in particular SkM*, SkX, SkO, SLy4, Skxs25 and Z, have been used in the nonrelativistic region. In the relativistic region, the density-dependence meson-exchange models and density-dependence point-coupling models are used. Both methods are used to study ground state properties such as binding energy, mass radial density distribution and the corresponding root mean square (rms) mass radii. The fragmentation reaction cross-section is used as an important property to investigate the halo structure. Strong evidence for existence of a neutron halo in [Formula: see text]Li and [Formula: see text]Be and proton halo in [Formula: see text]Ne, [Formula: see text]Al and [Formula: see text]P are found using the SHF model and reaction cross-section. The ability of the SHF model to study the exotic structure with shell model occupation probability is confirmed.
用非相对论和相对论平均场方法研究一些奇异核的核结构
采用非相对论方法Skyrme-Hartree-Fock (SHF)和相对论Hartree-Fock-Bogoliubov (RHFB)方法研究了质子和中子滴线处某些奇异核的核结构。不同的Skyrme参数化,特别是SkM*、SkX、SkO、sl4、Skxs25和Z,已经在非相对论性区域得到应用。在相对论区域,使用了密度依赖的介子交换模型和密度依赖的点耦合模型。这两种方法都用于研究基态性质,如结合能、质量径向密度分布和相应的质量半径均方根。裂解反应截面是研究光晕结构的重要指标。利用SHF模型和反应截面发现了[公式:见文]Li和[公式:见文]Be中存在中子晕和[公式:见文]Ne、[公式:见文]Al和[公式:见文]P中存在质子晕的有力证据。验证了SHF模型研究具有壳模型占用概率的奇异结构的能力。
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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