arXiv:2512.22951·v1·Nuclear Theory
The effect of inversion of and orbits on halo formation in heavy sodium isotopes
Jagjit Singh · J. Casal · L. Fortunato · N. R. Walet
Abstract
The role of the inversion of the and shell-model orbits in the emergence of halo structures in the ground states of neutron-rich Na is investigated. Families of two- and three-body models are constructed with effective core-neutron interactions, with parameter choices based on a combination of the available experimental data and systematic trends, as well as the GPT - interaction and a phenomenological three-body force. Our results indicate a possible one-neutron halo in Na, while Na exhibit features of Borromean halos. The halo formation is driven by the weakening of the shell gap and inversion of the and orbits expected to occur somewhere near these masses. We further show that the electric dipole response provides a clear and sensitive probe of halo structure in these isotopes.
Comments: 9 pages, 5 figures, 1 table