Relativistic quasiparticle time blocking approximation. II. Pygmy dipole resonance in neutron-rich nuclei
Abstract
Theoretical studies of low-lying dipole strength in even-even spherical nuclei within the relativistic quasiparticle time blocking approximation (RQTBA) are presented. The RQTBA developed recently as an extension of the self-consistent relativistic quasiparticle random phase approximation (RQRPA) enables one to investigate effects of coupling of two-quasiparticle excitations to collective vibrations within a fully consistent calculation scheme based on covariant energy density functional theory. Dipole spectra of even-even Sn -- Sn and Ni -- Ni isotopes calculated within both RQRPA and RQTBA show two well separated collective structures: the higher-lying giant dipole resonance (GDR) and the lower-lying pygmy dipole resonance (PDR) which can be identified by a different behavior of the transition densities of states in these regions.
Keywords
Cite
@article{arxiv.0811.1423,
title = {Relativistic quasiparticle time blocking approximation. II. Pygmy dipole resonance in neutron-rich nuclei},
author = {E. Litvinova and P. Ring and V. Tselyaev and K. Langanke},
journal= {arXiv preprint arXiv:0811.1423},
year = {2009}
}
Comments
28 pages, 13 figures