English

Non-yrast nuclear spectra in a model of coherent quadrupole-octupole motion

Nuclear Theory 2012-03-09 v1 Nuclear Experiment Quantum Physics

Abstract

A model assuming coherent quadrupole-octupole vibrations and rotations is applied to describe non-yrast energy sequences with alternating parity in several even-even nuclei from different regions, namely 152,154^{152,154}Sm, 154,156,158^{154,156,158}Gd, 236^{236}U and 100^{100}Mo. Within the model scheme the yrast alternating-parity band is composed by the members of the ground-state band and the lowest negative-parity levels with odd angular momenta. The non-yrast alternating-parity sequences unite levels of β\beta-bands with higher negative-parity levels. The model description reproduces the structure of the considered alternating-parity spectra together with the observed B(E1), B(E2) and B(E3) transition probabilities within and between the different level-sequences. B(E1) and B(E3) reduced probabilities for transitions connecting states with opposite parity in the non-yrast alternating-parity bands are predicted. The implemented study outlines the limits of the considered band-coupling scheme and provides estimations about the collective energy potential which governs the quadrupole-octupole properties of the considered nuclei.

Keywords

Cite

@article{arxiv.1203.1873,
  title  = {Non-yrast nuclear spectra in a model of coherent quadrupole-octupole motion},
  author = {N. Minkov and S. Drenska and M. Strecker and W. Scheid and H. Lenske},
  journal= {arXiv preprint arXiv:1203.1873},
  year   = {2012}
}

Comments

38 pages, 9 figures