English

Anomalous low-energy $E2$-related behavior in triaxial nuclei

Nuclear Theory 2025-08-01 v1

Abstract

The anomalous low-energy E2E2-related behavior of a triaxially-deformed nucleus bas been identified and analyzed based on the SU(3) algebraic theory within the framework of the interacting boson model. The results show striking features that include a B(E2;41+21+)/B(21+01+)<1.0B(E2;4_1^+\rightarrow2_1^+)/B(2_1^+\rightarrow0_1^+)<1.0 transition rate ratio and a E(41+)/E(21+)>2.0E(4_1^+)/E(2_1^+)>2.0 excitation energy ratio that can be tracked back to a finite-NN effect, which in a large-NN limit of the theory yields normal results for a stable γ\gamma-deformation. This description is shown to be able to explain observed E2E2 anomalous phenomenon in neutron-deficient nuclei such as 172^{172}Pt and 168^{168}Os, and in so doing yields a deeper understanding of the physical features of a soft triaxially-deformed nucleus.

Keywords

Cite

@article{arxiv.2207.06201,
  title  = {Anomalous low-energy $E2$-related behavior in triaxial nuclei},
  author = {Yu Zhang and Ying-Wen He and D. Karlsson and Chong Qi and Feng Pan and J. P. Draayer},
  journal= {arXiv preprint arXiv:2207.06201},
  year   = {2025}
}
R2 v1 2026-06-25T00:52:53.263Z