English

alpha-cluster correlations and symmetry breaking in light nuclei

Nuclear Theory 2012-08-17 v1 Quantum Gases Strongly Correlated Electrons

Abstract

α\alpha-cluster correlations in the ground states of 12^{12}C and 16^{16}O are studied. Because of the α\alpha correlations, the intrinsic states of 12^{12}C and 16^{16}O have triangle and tetrahedral shapes, respectively. The deformations are regarded as spontaneous symmetry breaking of rotational invariance, and the resultant oscillating surface density is associated with a density wave (DW) state caused by the instability of Fermi surface with respect to a kind of 1p1p-1h1h correlations. To discuss the symmetry breaking between uniform density states and the oscillating density state, a schematic model of a few clusters on a Fermi gas core in a one-dimensional finite box was introduced. The model analysis suggests structure transitions from a Fermi gas state to a DW-like state via a BCS-like state, and to a Bose Einstein condensation (BEC)-like state depending on the cluster size relative to the box size. It was found that the oscillating density in the DW-like state originates in Pauli blocking effects.

Keywords

Cite

@article{arxiv.1208.3275,
  title  = {alpha-cluster correlations and symmetry breaking in light nuclei},
  author = {Yoshiko Kanada-En'yo and Yoshimasa Hidaka},
  journal= {arXiv preprint arXiv:1208.3275},
  year   = {2012}
}

Comments

20 pages, 8 figures