Ground State Electromagnetic Moments of $^{37}$Ca
Abstract
The hyperfine coupling constants of neutron deficient Ca were deduced from the atomic hyperfine spectrum of the transition in Ca II, measured using the collinear laser spectroscopy technique. The ground-state magnetic-dipole and spectroscopic electric-quadrupole moments were determined for the first time as and fm, respectively. The experimental values agree well with nuclear shell model calculations using the universal sd model-space Hamiltonians versions A and B (USDA/B) in the -model space with a 95\% probability of the canonical nucleon configuration. It is shown that the magnetic moment of Ca requires a larger non--shell component than that of Ca for good agreement with the shell-model calculation, indicating a more robust closed sub-shell structure of Ca at the neutron number = 16 than Ca. The results are also compared to valence-space in-medium similarity renormalization group calculations based on chiral two- and three-nucleon interactions.
Keywords
Cite
@article{arxiv.1906.02298,
title = {Ground State Electromagnetic Moments of $^{37}$Ca},
author = {A. Klose and K. Minamisono and A. J. Miller and B. A. Brown and D. Garand and J. D. Holt and J. D. Lantis and Y. Liu and B. Maaß and W. Nörtershäuser and S. V. Pineda and D. M. Rossi and A. Schwenk and F. Sommer and C. Sumithrarachchi and A. Teigelhöfer and J. Watkins},
journal= {arXiv preprint arXiv:1906.02298},
year = {2019}
}