Nuclear charge-exchange excitations in localized covariant density functional theory
arXiv:1310.3918 · doi:10.1051/epjconf/20146602064
Abstract
The recent progress in the studies of nuclear charge-exchange excitations with localized covariant density functional theory is briefly presented, by taking the fine structure of spin-dipole excitations in 16O as an example. It is shown that the constraints introduced by the Fock terms of the relativistic Hartree-Fock scheme into the particle-hole residual interactions are straightforward and robust.
4 pages, 1 figure, Proceedings of INPC2013, Florence, Italy, 2-7 June 2013
References in corpus (8)
- Relativistic Continuum Hartree Bogoliubov Theory for Ground State Properties of Exotic Nuclei
- Spin-isospin resonances: A self-consistent covariant description
- Isospin corrections for superallowed Fermi beta decay in self-consistent relativistic random phase approximation approaches
- Evolution of Nuclear Shell Structure due to the Pion Exchange Potential
- Feasibility of the finite amplitude method in covariant density functional theory
- Localized form of Fock terms in nuclear covariant density functional theory
- The Slater approximation for Coulomb exchange effects in nuclear covariant density functional theory
- Local covariant density functional constrained by the relativistic Hartree-Fock theory