English

Shell Model Description of $^{102-108}$Sn Isotopes

Nuclear Theory 2012-05-15 v1

Abstract

We have performed shell model calculations for neutron deficient even 102108^{102-108}Sn and odd 103107^{103-107}Sn isotopes in sdg7/2h11/2sdg_{7/2}h_{11/2} model space using two different interactions. The first set of interaction is due to Brown {\it et al.} and second is due to Hoska {\it et al}. The calculations have been performed using doubly magic 100^{100}Sn as core and valence neutrons are distributed over the single particle orbits 1g7/2g_{7/2}, 2d5/2d_{5/2}, 2d3/2d_{3/2}, 3s1/2s_{1/2} and 1h11/2h_{11/2}. In more recent experimental work for 101^{101}Sn [Phys. Rev. Lett. {\bf 105} (2010) 162502], the g.s. is predicted as 5/2+^+ with excited 7/2+^+ at 172 keV. We have also performed another two set of calculations by taking difference in single particle energies of 2d5/2d_{5/2} and 1g7/2g_{7/2} orbitals by 172 keV. The present state-of-the-art shell model calculations predicts fair agreements with the experimental data. These calculations serve as a test of nuclear shell model in the region far from stability for unstable Sn isotopes near the doubly magic 100^{100}Sn core.

Keywords

Cite

@article{arxiv.1204.2492,
  title  = {Shell Model Description of $^{102-108}$Sn Isotopes},
  author = {T. Trivedi and P. C. Srivastava and D. Negi and I. Mehrotra},
  journal= {arXiv preprint arXiv:1204.2492},
  year   = {2012}
}

Comments

Int. J. Mod. Phys. E accepted for publication

R2 v1 2026-06-21T20:48:04.381Z