First-excited state $g$ factors in the stable, even Ge and Se isotopes
Abstract
Transient-field -factor measurements in inverse kinematics were performed for the first-excited states of the stable, even isotopes of Ge and Se. The factors of Ge and Se were measured simultaneously using a cocktail beam, which eliminates most possible sources of systematic error in a relative -factor measurement. The results are , , , , , , and . The measured -factor ratios are in agreement with ratios from previous measurements, despite considerable variation in previous reported absolute values. The absolute values of the factors remain uncertain, however the Rutgers parametrization was used to set the transient-field strength and then compare the experimental factors with shell-model calculations based on the JUN45 and jj44b interactions. Modest agreement was found between experiment and theory for both interactions. The shell model calculations indicate that the values and trends are determined largely by the balance of the spin carried by orbital motion of the protons.
Cite
@article{arxiv.1910.10877,
title = {First-excited state $g$ factors in the stable, even Ge and Se isotopes},
author = {B. P. McCormick and A. E. Stuchbery and B. A. Brown and G. Georgiev and B. J. Coombes and T. J. Gray and M. S. M. Gerathy and G. J. Lane and T. Kibédi and A. J. Mitchell and M. W. Reed and A. Akber and L. J. Bignell and J. T. H. Dowie and T. K. Eriksen and S. Hota and N. Palalani and T. Tornyi},
journal= {arXiv preprint arXiv:1910.10877},
year = {2019}
}
Comments
13 pages; 12 figures. Published as Phys. Rev. C 100, 044317 (2019). URL: https://link.aps.org/doi/10.1103/PhysRevC.100.044317