Microscopic description of nuclei in the middle of the pf-shell by a shell model calculation with G-matrix interaction
Abstract
Energy levels and electromagnetic properties of with nuclides are studied in terms of a large-scale shell model calculation, which contains no newly adjusted parameters. The Kuo-Brown -matrix interaction is shown to reproduce energy levels of 205 low-lying states of these nuclei. We evaluate effective charges by incorporating the core-polarization effects caused by the coupling to GQR's. We then compute E2 moments and transition probabilities. The M1 moments and transition rates are calculated by quoting the effective -factors of Towner, which are obtained by taking into account the meson-exchange and the core-polarization mechanisms. By this microscopic calculation most of the E2 properties and the magnetic moments are reproduced. Although there are agreements and disagreements in the M1 transition rates, the general tendency is reproduced. The and excitation from the ground state to some low-lying states is also discussed.
Keywords
Cite
@article{arxiv.nucl-th/9308018,
title = {Microscopic description of nuclei in the middle of the pf-shell by a shell model calculation with G-matrix interaction},
author = {Hitoshi Nakada and Takashi Sebe and Takaharu Otsuka},
journal= {arXiv preprint arXiv:nucl-th/9308018},
year = {2015}
}
Comments
63 pages (LaTeX, to be published in Nucl. Phys. A)