English

Three-body model for an isoscalar spin-triplet neutron-proton pair in $^{102}{\rm Sb}$

Nuclear Theory 2016-07-20 v2

Abstract

We discuss the isoscalar T=0,S=1T=0, S=1 pairing correlation in the low-lying states of 102Sb=100Sn+p+n^{102}{\rm Sb}={}^{100}{\rm Sn}+p+n nucleus. To this end, we employ core+p+n{\rm core}+p+n three-body model with the model space constructed by self-consistent mean-field calculations. The model is developed with both non-relativistic and relativistic effective interactions, the latter of which are found to be more realistic for the present case due to the pseudo-spin symmetry. It turns out that the (L,S,T)=(0,1,0)(L,S,T)=(0,1,0) pairing scheme is strongly hindered in 102^{102}Sb with the relativistic model because of the near degeneracy of the g7/2g_{7/2} and d5/2d_{5/2} orbitals in the valence space. This pair-breaking effect is clearly seen in the charge-exchange Gamow-Teller-type transitions rather than in the binding energies of T=0T=0 and T=1T=1 states.

Keywords

Cite

@article{arxiv.1603.07483,
  title  = {Three-body model for an isoscalar spin-triplet neutron-proton pair in $^{102}{\rm Sb}$},
  author = {Yusuke Tanimura and Hiroyuki Sagawa},
  journal= {arXiv preprint arXiv:1603.07483},
  year   = {2016}
}

Comments

12 pages, 10 figures. The title has been changed. Accepted for publication in Phys. Rev. C