Quadrupole and octupole collectivity and cluster structures in neon isotopes
Abstract
The lowest positive- and negative-parity bands of Ne and neutron-rich even-even Ne isotopes are investigated using a theoretical framework based on energy density functionals. Starting from a self-consistent relativistic Hartree-Bogoliubov calculation of axially-symmetric and reflection-asymmetric deformation energy surfaces, the collective symmetry-conserving states are built using projection techniques and the generator coordinate method. Overall a good agreement with the experimental excitation energies and transition rates is obtained. In particular, the model provides an accurate description of the excitation spectra and transition probabilities in Ne. The contribution of cluster configurations to the low-energy states is discussed, as well as the transitional character of the ground state. The analysis is extended to Ne and the shape-coexisting isotope Ne, and to the drip-line nuclei Ne and Ne. The role of valence neutrons in the formation of molecular-type bonds between clusters is discussed.
Keywords
Cite
@article{arxiv.1802.02873,
title = {Quadrupole and octupole collectivity and cluster structures in neon isotopes},
author = {P. Marević and J. -P. Ebran and E. Khan and T. Nikšić and D. Vretenar},
journal= {arXiv preprint arXiv:1802.02873},
year = {2018}
}
Comments
16 pages, 15 figures, 2 tables, Accepted for Publication in Physical Review C