English

Microscopic investigation of $E2$ matrix elements in atomic nuclei

Nuclear Theory 2025-02-26 v1 Nuclear Experiment

Abstract

A systematic analysis of E2E2 matrix elements of 72^{72}Ge, 76^{76}Ge, 168^{168}Er, 186^{186}Os, 188^{188}Os, 190^{190}Os, 192^{192}Os and 194^{194}Pt nuclides is performed using the beyond mean-field approach of triaxial projected shell model (TPSM). For these nuclei, large sets of E2E2 matrix elements have been deduced from the multi-step Coulomb excitation experiments, and it is shown that TPSM approach provides a reasonable description of the measured transitions. We have evaluated 1496 E2E2 matrix elements up to spin, I=10I=10 for the eight nuclei studied, and tabulate them for future experimental and theoretical comparisons. Further, shape invariant analysis has been performed with the calculated E2E2 transitions using the Kumar-Cline sum rules. It is inferred from the analysis that the resulting shape, after configuration mixing of the quasiparticle states, transforms from γ\gamma-rigid to that of γ\gamma-soft for some nuclei, in conformity with the experimental data.

Keywords

Cite

@article{arxiv.2502.18076,
  title  = {Microscopic investigation of $E2$ matrix elements in atomic nuclei},
  author = {S. P. Rouoof and Nazira Nazir and S. Jehangir and G. H. Bhat and J. A. Sheikh and N. Rather and S. Frauendorf},
  journal= {arXiv preprint arXiv:2502.18076},
  year   = {2025}
}

Comments

24 pages, 14 figures

R2 v1 2026-06-28T21:57:07.826Z