English

Selection Rule for Electromagnetic Transitions in Nuclear Chiral Geometry

Nuclear Theory 2011-04-05 v1

Abstract

In order to find the selection rules that can be applied to the electromagnetic transitions when the chiral geometry is achieved, a model for a special configuration in triaxial odd-odd nuclei is constructed which exhibits degenerate chiral bands with a sizable rotation. A quantum number obtained from the invariance of the Hamiltonian is given and the selection rule for electromagnetic transition probabilities in chiral bands is derived in terms of this quantum number. Among the available candidates for chiral bands of odd-odd nuclei, in which the near degeneracy of two ΔI=1\Delta I = 1 bands is observed, the measured electromagnetic properties of the two bands in 55128^{128}_{55}Cs73_{73} and 55126^{126}_{55}Cs71_{71} are consistent with the rules, while those of 59134^{134}_{59}Pr75_{75} and 57132^{132}_{57}La75_{75} are not.

Keywords

Cite

@article{arxiv.1102.0163,
  title  = {Selection Rule for Electromagnetic Transitions in Nuclear Chiral Geometry},
  author = {Ikuko Hamamoto},
  journal= {arXiv preprint arXiv:1102.0163},
  year   = {2011}
}

Comments

9 pages and 3 figures. This is a talk given in the 17th Nuclear Physics Workshop held in Kazimierz Dolny, Poland, for Sept.22-26, 2010

R2 v1 2026-06-21T17:19:57.986Z