Medium-mass nuclei from chiral nucleon-nucleon interactions
Nuclear Theory
2008-11-26 v1
Abstract
We compute the binding energies, radii, and densities for selected medium-mass nuclei within coupled-cluster theory and employ the "bare" chiral nucleon-nucleon interaction at order N3LO. We find rather well-converged results in model spaces consisting of 15 oscillator shells, and the doubly magic nuclei 40Ca, 48Ca, and the exotic 48Ni are underbound by about 1 MeV per nucleon within the CCSD approximation. The binding-energy difference between the mirror nuclei 48Ca and 48Ni is close to theoretical mass table evaluations. Our computation of the one-body density matrices and the corresponding natural orbitals and occupation numbers provides a first step to a microscopic foundation of the nuclear shell model.
Cite
@article{arxiv.0806.3478,
title = {Medium-mass nuclei from chiral nucleon-nucleon interactions},
author = {G. Hagen and T. Papenbrock and D. J. Dean and M. Hjorth-Jensen},
journal= {arXiv preprint arXiv:0806.3478},
year = {2008}
}
Comments
5 pages, 5 figures