English

On-line Excited-State Laser Spectroscopy of Trapped Short-Lived Ra$^+$ Ions

Atomic Physics 2010-03-30 v1 Nuclear Experiment

Abstract

As an important step towards an atomic parity violation experiment in one single trapped Ra+^+ ion, laser spectroscopy experiments were performed with on-line produced short-lived 212,213,214^{212,213,214}Ra+^+ ions. The isotope shift of the 626\,^2D3/2_{3/2}\,-\,727\,^2P1/2_{1/2} and 626\,^2D3/2_{3/2}\,-\,727\,^2P3/2_{3/2} transitions and the hyperfine structure constant of the 727\,^2S1/2_{1/2} and 626\,^2D3/2_{3/2} states in 213^{213}Ra+^+ were measured. These values provide a benchmark for the required atomic theory. A lower limit of 232(4)232(4) ms for the lifetime of the metastable 626\,^2D5/2_{5/2} state was measured by optical shelving.

Keywords

Cite

@article{arxiv.1003.5580,
  title  = {On-line Excited-State Laser Spectroscopy of Trapped Short-Lived Ra$^+$ Ions},
  author = {O. O. Versolato and G. S. Giri and L. W. Wansbeek and J. E. van den Berg and D. J. van der Hoek and K. Jungmann and W. L. Kruithof and C. J. G. Onderwater and B. K. Sahoo and B. Santra and P. D. Shidling and R. G. E. Timmermans and L. Willmann and H. W. Wilschut},
  journal= {arXiv preprint arXiv:1003.5580},
  year   = {2010}
}

Comments

4.2 pages, 6 figures, 2 tables.