English

A frequency-stabilized light source at 399 nm using an Yb hollow-cathode lamp

Atomic Physics 2018-05-21 v1

Abstract

We demonstrate a diode laser system operating at 399 nm that is stabilized to the 6s2 1S06s6p 1P1{\rm 6s^{2}\ {^1}S_{0} - 6s6p\ {^1}P_{1}} electric dipole transition in ytterbium (Yb) atoms in a hollow-cathode lamp. The frequency stability of the laser reached 1.1×10111.1 \times 10^{-11} at an averaging time of τ=1 s\tau = 1\ \mathrm{s}. We performed an absolute frequency measurement using an optical frequency comb and determined that the absolute frequency of the laser stabilized to the 1S01P1{\rm {^1}S_{0} - {^1}P_{1}} transition in 174Yb^{174}\mathrm{Yb} was 751 526 522.26(9) MHz. We also investigated several systematic frequency shifts while changing some of the light source parameters and measured several isotope shifts. The measured laser frequency will provide useful information regarding the practical use of the frequency-stabilized light source at 399 nm.

Keywords

Cite

@article{arxiv.1805.07056,
  title  = {A frequency-stabilized light source at 399 nm using an Yb hollow-cathode lamp},
  author = {Takehiko Tanabe and Daisuke Akamatsu and Hajime Inaba and Sho Okubo and Takumi Kobayashi and Masami Yasuda and Kazumoto Hosaka and Feng-Lei Hong},
  journal= {arXiv preprint arXiv:1805.07056},
  year   = {2018}
}

Comments

14 pages, 6 figures, 1 table

R2 v1 2026-06-23T01:59:33.679Z