Quadrupole moments of spherical semi-magic nuclei within the self-consistent Theory of Finite Fermi Systems
arXiv:1111.3117 · doi:10.1140/epja/i2012-12070-1
Abstract
The quadrupole moments of odd neighbors of semi-magic lead and tin isotopes and isotones are calculated within the self-consistent Theory of Finite Fermi Systems based on the Energy Density Functional by Fayans et al. Two sets of parameters, DF3 and DF3-a, fixed previously are used. They differ by the spin-orbit and effective tensor force parameters, the latter being significantly bigger in the DF3-a functional. Results for the two functionals turned out to be rather different. The functional DF3-a leads to quadrupole moments in reasonable agreement with the experimental ones for most nuclei examined.
LaTex, 11 pages, 11 figures, submitted to Phys. Rev. C
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Cited by in corpus (17)
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- Alpha-decay energies of superheavy nuclei for the Fayans functional
- Spectroscopic factors of magic and semimagic nuclei within the self-consistent theory of finite Fermi systems
- Fayans functional for deformed nuclei. Uranium region
- Phonon-particle coupling effects in odd-even double mass differences of semi-magic nuclei
- The first self-consistent calculation of quadrupole moments of odd semi-magic nuclei accounting for phonon induced corrections
- Self-consistent Theory of Finite Fermi Systems vs Skyrme-Hartree-Fock method. Spherical nuclei
- Quadrupole moments of odd-odd near-magic nuclei
- Phonon-particle coupling effects in odd-even mass differences of semi-magic nuclei
- Including particle-vibration coupling in the Fayans functional. Odd-even mass differences of semi-magic nuclei
- Particle-phonon coupling effects within theory of finite Fermi systems
- Magnetic moments of odd-odd spherical nuclei
- Self-consistent account for phonon induced corrections to quadrupole moments of odd nuclei. Pole and non-pole diagrams