Reduction of SO in $^{34}$Si: weak binding or density-depletion effect ?
Abstract
The reduction of the neutron spin-orbit splitting between the Ca and Si isotones is a unique feature throughout the chart of nuclides, as the spin-orbit splitting usually increases with . Moreover, its way of decrease, gradual between Ca and Si or abrupt between S and Si, as well as its origin, caused by the weak binding energy of the states or by the sudden central proton density depletion in Si, are subject of debate. The results reported here using the self-consistent Covariant Energy Density Functional calculations with the DD-ME2 parametrization rather point to an abrupt, local decrease in Si, and to the large dominance of the central density depletion effect. It is concluded that weak binding, central density depletion as well as correlations must be taken into account to fully evaluate the amplitude and causes of this spin-orbit reduction.
Keywords
Cite
@article{arxiv.2005.03087,
title = {Reduction of SO in $^{34}$Si: weak binding or density-depletion effect ?},
author = {O. Sorlin and F. de Oliveira and J. P. Ebran},
journal= {arXiv preprint arXiv:2005.03087},
year = {2020}
}
Comments
5 pages, 4 figures, 1 table, to be submitted to Phys.Lett.B