High-resolution laser spectroscopy of $^{27-32}$Al
Abstract
Hyperfine spectra of Al () have been measured at the ISOLDE-CERN facility via collinear laser spectroscopy using the atomic transition. For the first time, mean-square charge radii of radioactive aluminum isotopes have been determined alongside the previously unknown magnetic dipole moment of Al and electric quadrupole moments of Al. A potentially reduced charge radius at may suggest an effect of the shell closure, which is visible in the Al chain, contrary to other isotopic chains in the shell. The experimental results are compared to theoretical calculations in the framework of the valence-space in-medium similarity renormalization group using multiple sets of two and three-nucleon forces from chiral effective field theory. While the trend of experimental magnetic dipole and electric quadrupole moments is well reproduced, the absolute values are underestimated by theory, consistent with earlier studies. Moreover, both the scale and trend of the charge radii appear to be very sensitive to the chosen interaction.
Keywords
Cite
@article{arxiv.2010.06918,
title = {High-resolution laser spectroscopy of $^{27-32}$Al},
author = {H. Heylen and C. S. Devlin and W. Gins and M. L. Bissell and K. Blaum and B. Cheal and L. Filippin and R. F. Garcia Ruiz and M. Godefroid and C. Gorges and J. D. Holt and A. Kanellakopoulos and S. Kaufmann and Á. Koszorús and K. König and S. Malbrunot-Ettanauer and T. Miyagi and R. Neugart and G. Neyens and W. Nörtershäuser and R. Sánchez and F. Sommer and L. V. Rodríguez and L. Xie and Z. Y. Xu and X. F. Yang and D. T. Yordanov},
journal= {arXiv preprint arXiv:2010.06918},
year = {2021}
}