Shell-model descriptions of mass 16-19 nuclei with chiral two- and three-nucleon interactions
Abstract
Shell-model calculations for several mass 16-19 nuclei are performed using the NLO two-nucleon potential with and without the addition of an in-medium three-nucleon potential , which is a density-dependent effective two-nucleon potential recently derived from the leading-order chiral three-nucleon force by Holt, Kaiser, and Weise. We first calculate the low-momentum interactions from and . The shell-model effective interactions for both the one-shell and two-shell model spaces are then obtained from these low-momentum interactions using respectively the Lee-Suzuki and the recently developed Okamoto and Suzuki iteration methods. The effects of to the low-lying states of , , and are generally small and attractive, mainly lowering the ground-state energies of these nuclei and making them in better agreements with experiments than those calculated with alone. The excitation spectra of these nuclei are not significantly affected by . The low-lying spectra of these nuclei calculated with the and model spaces are closely similar to each other. Our shell-model calculations for indicate that the interaction is important and desirable for the binding energy of this nucleus.
Keywords
Cite
@article{arxiv.1105.4169,
title = {Shell-model descriptions of mass 16-19 nuclei with chiral two- and three-nucleon interactions},
author = {Huan Dong and T. T. S. Kuo and J. W. Holt},
journal= {arXiv preprint arXiv:1105.4169},
year = {2011}
}
Comments
9 pages, 11 figures