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Investigation of nuclear structure of 30–44S isotopes using spherical and deformed Skyrme–Hartree–Fock method

机译:用球形和变形Skyrme-Hartree-Fock方法研究30-44S同位素的核结构

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摘要

Nuclear many-body system is usually described by a mean-field built upon a nucleon–nucleon effective interaction. In this work, we investigate ground state properties of the sulfur isotopes covering a wide range from the line of stability up to the dripline region (30–44S). For this purpose the Hartree–Fock mean field theory in coordinate space with a Skyrme parameterization SkM* has been utilized. In particular, we calculate the nuclear charge, neutrons, protons, mass densities, the associated radii, neutron skin thickness and binding energy. The charge form factors have been also investigated using SkM*, SkO, SkE, SLy4 and Skxs15 Skyrme parameterizations and the results obtained using the theoretical approach are compared with the available experimental data. To investigate the potential energy surface as a function of the quadrupole deformation for isotopic sulfur chains, Skyrme–Hartree–Fock–Bogoliubov theory has been adopted with SLy4 parameterization.
机译:核多体系统通常由建立在核子-核子有效相互作用上的均值场来描述。在这项工作中,我们研究了从稳定线到滴水线区域(30-44S)的宽范围范围内的硫同位素的基态性质。为此,利用了Skytree参数化SkM *在坐标空间中的Hartree-Fock平均场理论。特别是,我们计算核电荷,中子,质子,质量密度,相关的半径,中子表皮厚度和结合能。还使用SkM *,SkO,SkE,SLy4和Skxs15 Skyrme参数化研究了电荷形状因数,并将使用理论方法获得的结果与可用的实验数据进行了比较。为了研究同位素硫链的势能面与四极变形的函数关系,已将Skyrme–Hartree–Fock–Bogoliubov理论与SLy4参数化结合使用。

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