English

Effect of cluster-shell competition of $^{12}$C on $E0$ transitions in $^{16}$O

Nuclear Theory 2016-01-25 v1 Nuclear Experiment

Abstract

In 16^{16}O, we investigate the relation between the E0E0 monopole transition matrix elements and cluster-shell competition using antisymmetrized quasi cluster model (AQCM), where the dissolution of alphaalpha clusters into quasi clusters due to the effect of the spin-orbit force is introduced. We focus on the structure change when the strength of the spin-orbit force is varied. The ground state dominantly has a compact four alphaalpha structure (doubly magic structure of the pp shell), which is rather independent of the strength. However the first excited state (02+0_2^+) has 12^{12}C+alpha+alpha cluster structure and this state is largely affected by the increase of the strength; the subclosure configuration of the p3/2p_{3/2} shell for the 12^{12}C cluster part becomes more important than three alphaalpha configuration. The E0E0 transition from the ground state with compact four alphaalpha configuration to the 02+0^+_2 state with 12^{12}C+alpha+alpha cluster configuration is suppressed when increasing the spin-orbit strength. Although the E0E0 operator itself does not have the spin dependence, the matrix element is sensitive to the difference of intrinsic spin structures of the two states. The E0E0 transition characterizes the persistence of four alphaalpha structure in the 02+0^+_2 state.

Keywords

Cite

@article{arxiv.1601.05892,
  title  = {Effect of cluster-shell competition of $^{12}$C on $E0$ transitions in $^{16}$O},
  author = {H. Matsuno and N. Itagaki},
  journal= {arXiv preprint arXiv:1601.05892},
  year   = {2016}
}