English

Frequency stability of a wavelength meter and applications to laser frequency stabilization

Optics 2015-12-16 v1 Atomic Physics Instrumentation and Detectors

Abstract

Interferometric wavelength meters have attained frequency resolutions down to the MHz range. In particular, Fizeau interferometers, which have no moving parts, are becoming a popular tool for laser characterization and stabilization. In this article, we characterize such a wavelength meter using an ultra-stable laser in terms of relative frequency instability σy(τ)\sigma_y(\tau) and demonstrate that it can achieve a short-term instability σy(1s)2×1010\sigma_y(1 s) \approx 2{\times}10^{-10} and a frequency drift of order 1010 MHz/day. We use this apparatus to demonstrate frequency control of a near-infrared laser, where a frequency instability below 3×10103{\times}10^{-10} from 1 s to 2000 s is achieved. Such performance is for example adequate for ions trapping and atoms cooling experiments.

Keywords

Cite

@article{arxiv.1512.04736,
  title  = {Frequency stability of a wavelength meter and applications to laser frequency stabilization},
  author = {Khaldoun Saleh and Jacques Millo and Alexandre Didier and Yann Kersalé and Clément Lacroûte},
  journal= {arXiv preprint arXiv:1512.04736},
  year   = {2015}
}

Comments

5 pages, 4 figures