English

Intercombination line frequencies in $^{171}$Yb validated with the clock transition

Atomic Physics 2023-05-23 v1

Abstract

We have carried absolute frequency measurements of the (6s2)1S0(6s^{2})\,^{1}S_{0} - (6s6p)3P1(6s6p)\,^{3}P_{1} transition in 171^{171}Yb (the intercombination line), where the spin-1/2 isotope yields two hyperfine lines. The measurements rely on sub-Doppler spectroscopy to yield a discriminator to which a 556 nm laser is locked. The frequency reference for the optical frequency measurements is a high-quality quartz oscillator steered to the GNSS timescale that is bridged with a frequency comb. The reference is validated to 3×1012\sim3\times10^{-12} by spectroscopy on the 1S03P0^{1}S_{0}-\,^{3}P_{0} (clock) line in laser cooled and trapped 171^{171}Yb atoms. From the hyperfine separation between the F=1/2F=1/2 and F=3/2F=3/2 levels of 3P1^{3}P_{1} we determine the hyperfine constant to be A(3P1)=3957833(28)A(^3P_1)= 3\,957\,833\,(28) kHz.

Keywords

Cite

@article{arxiv.2303.08421,
  title  = {Intercombination line frequencies in $^{171}$Yb validated with the clock transition},
  author = {Daniel M. Jones and Frank van Kann and John J. McFerran},
  journal= {arXiv preprint arXiv:2303.08421},
  year   = {2023}
}

Comments

10 pages, 9 figures

R2 v1 2026-06-28T09:17:57.560Z