English

Relativistic effect of spin and pseudospin symmetries

Nuclear Theory 2015-06-05 v1 Nuclear Experiment Quantum Physics

Abstract

Dirac Hamiltonian is scaled in the atomic units =m=1\hbar =m=1, which allows us to take the non-relativistic limit by setting the Compton wavelength % \lambda \rightarrow 0 . The evolutions of the spin and pseudospin symmetries towards the non-relativistic limit are investigated by solving the Dirac equation with the parameter λ\lambda. With λ\lambda transformation from the original Compton wavelength to 0, the spin splittings decrease monotonously in all spin doublets, and the pseudospin splittings increase in several pseudospin doublets, no change, or even reduce in several other pseudospin doublets. The various energy splitting behaviors of both the spin and pseudospin doublets with λ\lambda are well explained by the perturbation calculations of Dirac Hamiltonian in the present units. It indicates that the origin of spin symmetry is entirely due to the relativistic effect, while the origin of pseudospin symmetry cannot be uniquely attributed to the relativistic effect.

Keywords

Cite

@article{arxiv.1205.1582,
  title  = {Relativistic effect of spin and pseudospin symmetries},
  author = {Shou-Wan Chen and Jian-You Guo},
  journal= {arXiv preprint arXiv:1205.1582},
  year   = {2015}
}

Comments

15 pages, 7 figures, accepted by PRC