Nuclear Moments of Germanium Isotopes around $N$ = 40
Abstract
Collinear laser spectroscopy measurements were performed on Ge isotopes () at ISOLDE-CERN. The hyperfine structure of the transition of the germanium atom was probed with laser light of 269 nm, produced by combining the frequency-mixing and frequency-doubling techniques. The hyperfine fields for both atomic levels were calculated using state-of-the-art atomic relativistic Fock-space coupled-cluster calculations. A new Ge quadrupole moment was determined from these calculations and previously measured precision hyperfine parameters, yielding = 0.198(4) b, in excellent agreement with the literature value from molecular calculations. The moments of Ge have been revised: = +0.920(5) and = +0.114(8) b, and those of Ge have been confirmed. The experimental moments around are interpreted with large-scale shell-model calculations using the JUN45 interaction, revealing rather mixed wave function configurations, although their -factors are lying close to the effective single-particle values. Through a comparison with neighboring isotones, the structural change from the single-particle nature of nickel to deformation in germanium is further investigated around .
Keywords
Cite
@article{arxiv.2011.01659,
title = {Nuclear Moments of Germanium Isotopes around $N$ = 40},
author = {A. Kanellakopoulos and X. F. Yang and M. L. Bissell and M. L. Reitsma and S. W. Bai and J. Billowes and K. Blaum and A. Borschevsky and B. Cheal and C. S. Devlin and R. F. Garcia Ruiz and H. Heylen and S. Kaufmann and K. König and Á. Koszorús and S. Lechner and S. Malbrunot-Ettenauer and R. Neugart and G. Neyens and W. Nörtershäuser and T. Ratajczyk and L. V. Rodríguez and S. Sels and S. J. Wang and L. Xie and Z. Y. Xu and D. T. Yordanov},
journal= {arXiv preprint arXiv:2011.01659},
year = {2020}
}
Comments
accepted in Phys. Rev. C., in production