Ab-initio no-core shell model study of $^{18-24}$Ne isotopes
Abstract
We report \textit{ab initio} no-core shell model (NCSM) study of Ne isotopes for energy spectra, electromagnetic properties, and point-proton radii using three realistic interactions. We have used inside nonlocal outside Yukawa (INOY), charge-dependent Bonn 2000 (CDB2K) and the chiral next-to-next-to-next-to-leading order (NLO) interactions. We are able to reach basis size up to = 6 for Ne and = 4 for the Ne isotopes with m-scheme dimensions up to 1.0 in case of Ne. We observed better results for INOY interaction in terms of the binding energies of ground state (g.s.), and overall all three interactions provide good agreement with the experimental low-energy spectra. Our results for reduced transition strengths and magnetic moments are close to the experimental values. We found that for long-range observables such as the transition strengths, the electric quadrupole moments, and the point-proton radii (), we need higher calculations to obtain results comparable to the experimental data. We have observed almost 6 \% increment in the converged as we increase the model space from = 4 to = 6.
Cite
@article{arxiv.2208.00816,
title = {Ab-initio no-core shell model study of $^{18-24}$Ne isotopes},
author = {Chandan Sarma and Praveen C. Srivastava},
journal= {arXiv preprint arXiv:2208.00816},
year = {2023}
}
Comments
19 pages, 9 figures