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Spin-orbit splittings of neutron states in N = 20 isotones from covariant density functionals and their extensions

机译:中子状态的旋转轨道分裂在n = 20各异菜中,来自协助密度函数及其延伸

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Spin-orbit splitting is an essential ingredient for our understanding of the shell structure in nuclei. One of the most important advantages of relativistic mean-field (RMF) models in nuclear physics is the fact that the large spin-orbit (SO) potential emerges automatically from the inclusion of Lorentz-scalar and -vector potentials in the Dirac equation. It is therefore of great importance to compare the results of such models with experimental data. We investigate the size of 2p and 1f splittings for the isotone chain ~(40)Ca, ~(38)Ar, ~(36)S, and ~(34)Si in the framework of various relativistic and nonrelativistic density functionals. They are compared with the results of nonrelativistic models and with recent experimental data.
机译:旋转轨道分裂是我们理解细胞核中壳结构的必要成分。 核物理学中相对论平均场(RMF)模型的最重要优点之一是,大型旋转轨道(SO)势自动出现,包括Lorentz-Scalar和-Vector方程中的电位。 因此,使用实验数据比较这些模型的结果是非常重要的。 我们研究了同种环链〜(40)CA,〜(38)AR,〜(36)S和〜(34)SI的各种相对论和非椭圆密度函数的尺寸。 它们与非素描模型的结果和最近的实验数据进行了比较。

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