English

Prolate-Spherical Shape Coexistence at N=28 in $^{44}$S

Nuclear Experiment 2014-11-21 v1

Abstract

The structure of 44^{44}S has been studied using delayed γ\gamma and electron spectroscopy at \textsc{ganil}. The decay rates of the 02+^+_2 isomeric state to the 21+^+_1 and 01+^+_1 states have been measured for the first time, leading to a reduced transition probability B(E2~:~21+^{+}_1\rightarrow02+)^{+}_2)= 8.4(26)~e2^2fm4^4 and a monopole strength ρ2\rho^2(E0~:~02+^{+}_2\rightarrow01+)^{+}_1) =~8.7(7)×\times103^{-3}. Comparisons to shell model calculations point towards prolate-spherical shape coexistence and a phenomenological two level mixing model is used to extract a weak mixing between the two configurations.

Keywords

Cite

@article{arxiv.1007.4943,
  title  = {Prolate-Spherical Shape Coexistence at N=28 in $^{44}$S},
  author = {C. Force and S. Grévy and L. Gaudefroy and O. Sorlin and L. Caceres and F. Rotaru and J. Mrazek and N. L. Achouri and J. C. Angélique and F. Azaiez and B. Bastin and R. Borcea and A. Buta and J. M. Daugas and Z. Dlouhy and Zs. Dombradi and F. De Oliveira and F. Negoita and Y. Penionzhkevich and M. G. Saint-Laurent and D. Sohler and M. Stanoiu and I. Stefan and C. Stodel and F. Nowacki},
  journal= {arXiv preprint arXiv:1007.4943},
  year   = {2014}
}

Comments

5 pages, 3 figures, accepted for publication in Physical Review Letters

R2 v1 2026-06-21T15:54:05.765Z