Candidate MKiD nucleus 106Rh in triaxial relativistic mean-field approach with time-odd fields
arXiv:0905.3785 · doi:10.1103/PhysRevC.79.067302
Abstract
The configuration-fixed constrained triaxial relativistic mean-field approach is extended by including time-odd fields and applied to study the candidate multiple chiral doublets (MKiD) nucleus 106Rh. The energy contribution from time-odd fields and microscopical evaluation of center-of-mass correction as well as the modification of triaxial deformation parameters beta, gamma due to the time-odd fields are investigated. The contributions of the time-odd fields to the total energy are 0.1-0.3 MeV and they modify slightly the gamma values. However, the previously predicted multiple chiral doublets still exist.
9 pages, 3 figures, accepted for publication as a Brief Report in Physical Review C
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Cited by in corpus (11)
- Multiple chiral doublet bands of identical configuration in 103Rh
- Multiple Chirality in Nuclear Rotation: A Microscopic View
- Multiple chiral doublet candidate nucleus Rh in a relativistic mean-field approach
- Chirality in odd- Rh isotopes within triaxial particle rotor model
- Chiral geometry of higher excited bands in triaxial nuclei with particle-hole configuration
- Behavior of the collective rotor in nuclear chiral motion
- Recent progress in multiple chiral doublet bands
- Multi-chiral facets in symmetry restored states: Five chiral doublets candidates in even-even nucleus Nd
- Possible chiral doublets in Ni
- Coexistence of planar and aplanar rotations in Tl
- Covariant density functional theory for nuclear chirality in Nd