Structure of odd Ge isotopes with
arXiv:1210.5790 · doi:10.1134/S1063778813060124
Abstract
We have interpreted recently measured experimental data of Ge, and also for Ge isotopes in terms of state-of-the-art shell model calculations. Excitation energies, B(2) values, quadrupole moments and magnetic moments are compared with experimental data when available. The calculations have been performed with the recently derived interactions, namely with JUN45 and jj44b for space. We have also performed calculation for valence space using an effective interaction with Ca core and imposing a truncation to study the importance of the proton excitations across the Z=28 shell in this region. The predicted results of jj44b interaction are in good agreement with experimental data.
22 pages, 7 figures, Physics of Atomic Nuclei
References in corpus (10)
- Evolution of the N=50 shell gap energy towards Ni
- Observation of isotonic symmetry for enhanced quadrupole collectivity in neutron-rich 62,64,66Fe isotopes at N=40
- Shell model study of single-particle and collective structure in neutron-rich Cr isotopes
- Collectivity at N=50: 82Ge and 84Se
- A Comparison of Shell Model Results for Some properties of the Even-Even Ge Isotopes
- Large scale shell model calculations for odd-odd Mn isotopes
- Structure of Ga isotopes in and spaces
- Large scale shell model calculations for even-even Fe isotopes
- Shell-model results in and spaces for Co isotopes
- Shell model description of Ge isotopes