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相对论平均场理论中的张量项对自旋-轨道劈裂的影响
Effects of Tensor Coupling on Spin-Orbit Splittings in the Relativistic Mean Field Theory
【摘要】 在相对论平均场理论中引入同位旋标量-矢量介子ω张量项,以208Pb为例,研究了张量项对原子核平均势场、介子场、自旋-轨道耦合势、单粒子能级的自旋-轨道劈裂和原子核壳层结构等的影响.结果发现张量项对核子平均势的影响主要表现在原子核的表面.随着张量耦合强度的增加,自旋-轨道耦合势增强,单粒子能级的自旋-轨道劈裂增大,从而导致原子核单粒子能级的壳层结构发生很大变化,传统幻数所对应的主壳消失,新的主壳出现。
【Abstract】 The effects of iso-scalar to tensor coupling on spin-orbit splittings are studied in the framework of the Relativistic Mean Field theory. Taking 208Pb as an example, the influence of iso-scalar ω tensor coupling on nuclear mean-field potentials, σ-, ω- and p-meson fields, spin-orbit potentials, spin-orbit splittings and the single-particle level structure near the Fermi level are presented. It is found that the tensor term mainly changes the nuclear mean-field potential at the surface. A larger tensor coupling term will lead to stronger spin-orbit potential and larger spin-orbit splitting in the single particle level, which will change the single particle level structure, remove the traditional magic numbers and produce new ones.
【Key words】 relativistic mean field theory; tensor coupling term; spin-orbit splitting; shell structure;
- 【文献出处】 高能物理与核物理 ,High Energy Physics and Nuclear Physics , 编辑部邮箱 ,2006年05期
- 【分类号】O571.2
- 【下载频次】100