Isospin transfer modes in exotic nuclei
arXiv:1410.5441 · doi:10.1051/epjconf/20159301019
Abstract
This work presents an approach to nuclear spin-isospin response, which is capable of describing the overall strength distribution up to high excitation energies, including the fine structure of the low-lying strength, and resolving the long-standing quenching problem. The model is a covariant realization of the nuclear field theory and based on the self-consistent extensions of the covariant energy density functional (CEDF) theory. Results of the recent calculations for spin-isospin response of ordinary and exotic medium-mass nuclei are presented and discussed.
Invited talk at the 15-th International Symposium on Capture Gamma-Ray Spectroscopy and Related Topics (CGS15), to appear in EPJ Web of Conferences
References in corpus (7)
- Isospin Character of the Pygmy Dipole Resonance in 124Sn
- Relativistic quasiparticle time blocking approximation. Dipole response of open-shell nuclei
- Covariant theory of particle-vibrational coupling and its effect on the single-particle spectrum
- Particle-vibration coupling within covariant density functional theory
- Benchmarking nuclear models for Gamow-Teller response
- Fragmentation of spin-dipole strength in Zr and Pb
- Extended Theory of Finite Fermi Systems: Application to the collective and non-collective E1 strength in Pb