English

Dual-microcavity narrow-linewidth Brillouin laser

Optics 2014-10-14 v1

Abstract

Ultralow noise, yet tunable lasers are a revolutionary tool in precision spectroscopy, displacement measurements at the standard quantum limit, and the development of advanced optical atomic clocks. Further applications include LIDAR, coherent communications, frequency synthesis, and precision sensors of strain, motion, and temperature. While all applications benefit from lower frequency noise, many also require a laser that is robust and compact. Here, we introduce a dual-microcavity laser that leverages one chip-integrable silica microresonator to generate tunable 1550 nm laser light via stimulated Brillouin scattering (SBS) and a second microresonator for frequency stabilization of the SBS light. This configuration reduces the fractional frequency noise to 7.8×10141/Hz7.8\times10^{-14} 1/\sqrt{Hz} at 10 Hz offset, which is a new regime of noise performance for a microresonator-based laser. Our system also features terahertz tunability and the potential for chip-level integration. We demonstrate the utility of our dual-microcavity laser by performing optical spectroscopy with hertz-level resolution.

Keywords

Cite

@article{arxiv.1410.2912,
  title  = {Dual-microcavity narrow-linewidth Brillouin laser},
  author = {William Loh and Adam Green and Frederick Baynes and Daniel Cole and Franklyn Quinlan and Hansuek Lee and Kerry Vahala and Scott Papp and Scott Diddams},
  journal= {arXiv preprint arXiv:1410.2912},
  year   = {2014}
}

Comments

13 pages, 4 figures

R2 v1 2026-06-22T06:19:59.576Z