English

Coexisting single-particle excitations and octupole correlations in transitional nucleus $\mathbf{^{217}Ra}$

Nuclear Experiment 2023-07-14 v1 Nuclear Theory

Abstract

The level structure of the transitional nucleus 217Ra\mathrm{^{217}Ra} has been extended with the addition of around 20 new transitions. The discrepancies between the placements of several transitions reported in the earlier studies are resolved. The newly-established negative-parity sequence at low excitation energies hints at the expected parity-doublet structures in this nucleus. The properties of the observed simplex bands are compared with that of similar bands in neighboring nuclei. Since the presence of parity-doublet structures reflect octupole correlations, theoretical calculations using reflection-asymmetric triaxial particle rotor model (RAT-PRM) have been performed. A comparison of the observed features of the simplex bands with the predictions of the RAT-PRM calculations suggests that 217Ra\mathrm{^{217}Ra} exhibits an intermediate the behavior between the extremes of spherical and octupole-deformed nuclei. The termination of the simplex bands at intermediate energies and the structures lying above reflect the dominance of the single-particle excitations at higher excitation energies.

Keywords

Cite

@article{arxiv.2304.12052,
  title  = {Coexisting single-particle excitations and octupole correlations in transitional nucleus $\mathbf{^{217}Ra}$},
  author = {Madhu and A. Y. Deo and Khamosh Yadav and Dhananjaya Sahoo and Y. Y. Wang and Y. K. Wang and J. Meng and Saket Suman and S. K. Tandel and A. Sharma and I. Ahmed and K. Katre and K. Rojeeta Devi and S. Dutt and S. Kumar and Yashraj and S. Muralithar and R. P. Singh},
  journal= {arXiv preprint arXiv:2304.12052},
  year   = {2023}
}

Comments

15 pages, 16 figures

R2 v1 2026-06-28T10:15:44.499Z