English

Isotope Shifts of Radium Monofluoride Molecules

Nuclear Experiment 2021-07-28 v1 Nuclear Theory Atomic Physics

Abstract

Isotope shifts of 223226,228^{223-226,228}Ra19^{19}F were measured for different vibrational levels in the electronic transition A2Π1/2X2Σ+A^{2}{}{\Pi}_{1/2}\leftarrow X^{2}{}{\Sigma}^{+}. The observed isotope shifts demonstrate the particularly high sensitivity of radium monofluoride to nuclear size effects, offering a stringent test of models describing the electronic density within the radium nucleus. Ab initio quantum chemical calculations are in excellent agreement with experimental observations. These results highlight some of the unique opportunities that short-lived molecules could offer in nuclear structure and in fundamental symmetry studies.

Keywords

Cite

@article{arxiv.2105.10549,
  title  = {Isotope Shifts of Radium Monofluoride Molecules},
  author = {S. M. Udrescu and A. J. Brinson and R. F. Garcia Ruiz and K. Gaul and R. Berger and J. Billowes and C. L. Binnersley and M. L. Bissell and A. A. Breier and K. Chrysalidis and T. E. Cocolios and B. S. Cooper and K. T. Flanagan and T. F. Giesen and R. P. de Groote and S. Franchoo and F. P. Gustafsson and T. A. Isaev and A. Koszorus and G. Neyens and H. A. Perrett and C. M. Ricketts and S. Rothe and A. R. Vernon and K. D. A. Wendt and F. Wienholtz and S. G. Wilkins and X. F. Yang},
  journal= {arXiv preprint arXiv:2105.10549},
  year   = {2021}
}

Comments

The paper was accepted for publication as a Letter in Physical Review Letters