B(E2) anomaly and triaxial deformation within a two-fluid SU(3) symmetry
arXiv:2508.15414 · doi:10.1088/1674-1137/adcd4a
Abstract
The correlation between structure and triaxial deformation has been investigated within the framework of the proton-neutron boson model. The analysis reveals that the distinctive feature, characterized by along with , can emerge from the triaxial SU(3) symmetry inherent in two-fluid boson systems, attributed to band-mixing effects. This suggests a symmetry-based understanding of the anomalous transitions observed in experiments.
6 pages, 3 figures
References in corpus (8)
- Microscopic Formulation of Interacting Boson Model for Rotational Nuclei
- Analytic predictions for nuclear shapes, the prolate dominance and the prolate-oblate shape transition in the proxy-SU(3) model
- Proxy-SU(3) symmetry in heavy deformed nuclei
- Phase structure of the two-fluid proton-neutron system
- Triaxiality in the interacting boson model
- Triaxial rotor modes in finite-N boson systems
- B(E2) anomaly and triaxial deformation in the interacting boson model
- Quadrupole and octupole states in Sm using the proton-neutron interacting boson model