English

Tetrahedral $4\alpha$ and $^{12}\textrm{C}+\alpha$ cluster structures in $^{16}$O

Nuclear Theory 2017-09-13 v1

Abstract

We have investigated structures of the ground and excited states of 16O^{16}\textrm{O} with the method of variation after spin-parity projection in the antisymmetrized molecular dynamics model combined with the generator coordinate method of 12C+α^{12}\textrm{C}+\alpha cluster. The calculation reasonably reproduces the experimental energy spectra, E2E2, E3E3, E4E4, IS1IS1 transitions, and α\alpha-decay properties. The formation of 4 α\alpha clusters has been confirmed from nucleon degrees of freedom in the AMD model without assuming existence of any clusters. They form "tetrahedral" 4α4\alpha- and 12C+α^{12}\textrm{C}+\alpha-cluster structures. The 12C+α^{12}\textrm{C}+\alpha structure constructs the Kπ=0+K^\pi=0^+ band consisting of the 02+0^+_2, 21+2^+_1, and 41+4^+_1 states and the Kπ=0K^\pi=0^- band of the 121^-_2, 323^-_2, and 515^-_1 states. The 01+0^+_1, 313^-_1, and 42+4^+_2 states are assigned to the ground band constructed from the tetrahedral 4α\alpha structure. The 01+0^+_1 and 313^-_1 are approximately interpreted as TdT_d band members with the ideal tetrahedral configuration. The ground state 4α4\alpha correlation plays an important role in enhancement of the E3E3 transition strength to the 313^-_1. The 42+4^+_2 state is not the ideal TdT_d member but constructed from a distorted tetrahedral 4α4\alpha structure. Moreover, significant state mixing of the tetrahedral 4α4\alpha and 12C+α^{12}\textrm{C}+\alpha cluster structures occurs between 41+4^+_1 and 42+4^+_2 states, indicating that the TdT_d configuration of 4α4\alpha is rather fragile at Jπ=4+J^\pi=4^+.

Keywords

Cite

@article{arxiv.1705.09097,
  title  = {Tetrahedral $4\alpha$ and $^{12}\textrm{C}+\alpha$ cluster structures in $^{16}$O},
  author = {Yoshiko Kanada-En'yo},
  journal= {arXiv preprint arXiv:1705.09097},
  year   = {2017}
}

Comments

12 pages, 7 figures

R2 v1 2026-06-22T19:58:43.892Z