English

Covariant response theory beyond RPA and its application

Nuclear Theory 2008-11-26 v1

Abstract

The covariant particle-vibration coupling model within the time blocking approximation is employed to supplement the Relativistic Random Phase Approximation (RRPA) with coupling to collective vibrations. The Bethe-Salpeter equation in the particle-hole channel with an energy dependent residual particle-hole (p-h) interaction is formulated and solved in the shell-model Dirac basis as well as in the momentum space. The same set of the coupling constants generates the Dirac-Hartree single-particle spectrum, the static part of the residual p-h interaction and the particle-phonon coupling amplitudes. This approach is applied to quantitative description of damping phenomenon in even-even spherical nuclei with closed shells 208^{208}Pb and 132^{132}Sn. Since the phonon coupling enriches the RRPA spectrum with a multitude of ph\otimesphonon states a noticeable fragmentation of giant monopole and dipole resonances is obtained in the examined nuclei. The results are compared with experimental data and with results of the non-relativistic approach.

Keywords

Cite

@article{arxiv.nucl-th/0609061,
  title  = {Covariant response theory beyond RPA and its application},
  author = {E. Litvinova and P. Ring and V. Tselyaev},
  journal= {arXiv preprint arXiv:nucl-th/0609061},
  year   = {2008}
}

Comments

12 pages, 4 figures, Proceedings of the NSRT06 Conference