English

Impurity effect of Lambda hyperon on collective excitations of atomic nuclei

Nuclear Theory 2012-03-22 v1

Abstract

Taking the ground state rotational band in 24^{24}Mg as an example, we investigate the impurity effect of Λ\Lambda hyperon on collective excitations of atomic nuclei in the framework of non-relativistic energy density functional theory. To this end, we take into account correlations related to the restoration of broken symmetries and fluctuations of collective variables by solving the eigenvalue problem of a five-dimensional collective Hamiltonian for quadrupole vibrational and rotational degrees of freedom. The parameters of the collective Hamiltonian are determined with constrained mean-field calculations for triaxial shapes using the SGII Skyrme force. We compare the low-spin spectrum for 24^{24}Mg with the spectrum for the same nucleus inside Λ25^{25}_{\Lambda}Mg. It is found that the Λ\Lambda hyperon stretches the ground state band and reduces the B(E2:21+01+)B(E2:2^+_1 \rightarrow 0^+_1) value by 9\sim 9%, mainly by softening the potential energy surface towards the spherical shape, even though the shrinkage effect on the average proton radius is only 0.5\sim0.5%.

Keywords

Cite

@article{arxiv.1104.3200,
  title  = {Impurity effect of Lambda hyperon on collective excitations of atomic nuclei},
  author = {J. M. Yao and Z. P. Li and K. Hagino and M. Thi Win and Y. Zhang and J. Meng},
  journal= {arXiv preprint arXiv:1104.3200},
  year   = {2012}
}

Comments

16 pages, 5 figures, and 1 table

R2 v1 2026-06-21T17:54:57.969Z