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Self-consistent calculations of quadrupole moments of spherical nuclei

arXiv:1210.1699 · doi:10.1051/epjconf/20123810002

Abstract

The self-consistent Theory of Finite Fermi Systems based on the Energy Density Functional by Fayans et al. with the set DF3-a of parameters fixed previously is used to calculate three kinds of quadrupole moments. At first, we examined systematically quadrupole moments of odd neighbors of semi-magic lead and tin isotopes and $N=50,N=82$ isotones. Second, we found quadrupole moments of the first $2^+$ states in the same two chains of isotopes. Finally, we evaluated quadrupole moments of odd-odd nuclei neighboring to double magic ones. Reasonable agreement with available experimental data has been obtained. Predictions are made for quadrupole moments of nuclei in the vicinity of unstable magic nuclei

Talk presented at International Conference on Nuclear Structure and Related Topics, Dubna, July 2-7, 2012 (NSRT12). 7 pages