Tensor interaction contributions to single-particle energies
Abstract
We calculate the contribution of the nucleon-nucleon tensor interaction to single-particle energies with finite-range matrix potentials and with zero-range Skyrme potentials. The Skx Skyrme parameters including the zero-range tensor terms with strengths calibrated to the finite-range results are refitted to nuclear properties. The fit allows the zero-range proton-neutron tensor interaction as calibrated to the finite-range potential results and that gives the observed change in the single-particle gap (h)-(g) going from Sn to Sn. However, the experimental dependence of the spin-orbit splittings in Sn and Pb is not well described when the tensor is added, due to a change in the radial dependence of the total spin-orbit potential. The gap shift and a good fit to the -dependence can be recovered when the like-particle tensor interaction is opposite in sign to that required for the matrix.
Cite
@article{arxiv.nucl-th/0611019,
title = {Tensor interaction contributions to single-particle energies},
author = {B. A. Brown and T. Duguet and T. Otsuka and D. Abe and T. Suzuki},
journal= {arXiv preprint arXiv:nucl-th/0611019},
year = {2008}
}
Comments
5 pages, 4 figures, accepted for publication as Rapid Communication in Physical Review C