Nuclear $\beta$- and $\gamma$- Collective Bands in the SU$_q$(2) Rotator Model
Abstract
The SU(2) rotator model is used for describing the - and -bands of even-even rare earth and actinide collective nuclei. Good results are obtained in nuclei with valence pair number . It is shown that in the excited bands the violation of the exact SU(2) symmetry is generally stronger than in the ground state bands, indicating the presence of a nonadiabatic perturbation caused by the excited vibrational degrees of freedom. The physical content of the parameter is discussed. Predictions of the SU(2) model for B(E2) intraband transitions in excited bands are presented and the need for specific experimental data is pointed out.
Keywords
Cite
@article{arxiv.nucl-th/9605013,
title = {Nuclear $\beta$- and $\gamma$- Collective Bands in the SU$_q$(2) Rotator Model},
author = {N. Minkov and S. B. Drenska and P. P. Raychev and R. P. Roussev and D. Bonatsos},
journal= {arXiv preprint arXiv:nucl-th/9605013},
year = {2009}
}
Comments
Plain TeX, 10 pages, 3 figures available upon request from the Authors. To appear in the Proceedings of the International Summer School on Collective Motion and Nuclear Dynamics (Predeal, Romania, August 28 - September 9, 1995), ed. A. A. Raduta, D. S. Delion and I. I. Ursu (World Scientific, Singapore, 1996)