Consistent analysis of one-nucleon spectroscopic factors involving weakly- and strongly-bound nucleons
arXiv:1511.05495 · doi:10.1016/j.physletb.2016.03.086
Abstract
There is a considerable interest in understanding the dependence of one-nucleon removal cross sections on the asymmetry of the neutron and proton separation energies, following a large amount of experimental data and theoretical analyses in a framework of sudden and eikonal approximations of the reaction dynamics. These theoretical calculations involve both the single-particle cross section and the shell-model description of the projectile initial state and final states of the reaction residues. The configuration mixing in shell-model description of nuclear states depends on the proximity of one-nucleon decay threshold but does it depend sensitively on ? To answer this question, we use the shell model embedded in the continuum to investigate the dependence of one-nucleon spectroscopic factors on the asymmetry of and for mirror nuclei Si, Ne and S, Mg and for a series of neon isotopes ().
5 pages, 3 figures