English

Algebraic Solutions for $U^{BF}(5)-O^{BF}(6)$ Quantum Phase Transition in Odd Mass Number Nuclei

Nuclear Theory 2015-11-25 v2

Abstract

The spherical to deformed γunstable\gamma -unstable shape- phase transition in odd-A nuclei is investigated by using the Dual algebraic structures and the affine SU(1,1)SU(1,1) Lie Algebra within the framework of the interacting boson - fermion model. The new algebraic solution for A-odd nuclei is introduced. In this model, Single j=1/2j = 1/2 and 3/2 3/2 fermions are coupled with an even-even boson core. Energy spectra, quadruple electromagnetic transitions and an expectation value of the d-boson number operator are presented. Experimental evidence for the UBF(5)OBF(6)U^{BF} (5)-O^{BF} (6) transition in odd -A BaBa and RhRh isotopes is presented. The low-states energy spectra and B(E2)B(E2)values for these nuclei have been also calculated and compared with the experimental data.

Keywords

Cite

@article{arxiv.1507.06933,
  title  = {Algebraic Solutions for $U^{BF}(5)-O^{BF}(6)$ Quantum Phase Transition in Odd Mass Number Nuclei},
  author = {M. A. Jafarizadeh and M. Ghapanvari and N. Fouladi},
  journal= {arXiv preprint arXiv:1507.06933},
  year   = {2015}
}

Comments

20 pages, 24 figures