Thermal noise-limited laser stabilization to an 8 mL volume Fabry-P\'erot reference cavity with microfabricated mirrors
Abstract
Lasers stabilized to vacuum-gap Fabry-P\'erot optical reference cavities display extraordinarily low noise and high stability, with linewidths much less than 1 Hz. These lasers can expand into new applications and ubiquitous use with the development of compact, portable cavities that are manufacturable at scale. Here we demonstrate an 8 mL volume Fabry-P\'erot cavity constructed with mirrors that are fabricated lithographically with finesse near 1 million. A laser locked to the cavity exhibits phase noise limited by the cavity thermal noise for offset frequencies ranging from 1 Hz to 1 kHz, with a fractional frequency stability of 710 at 1 second. Furthermore, the use of microfabricated mirrors allows us to expand the design space of centimeter-scale cavities, and we explore the noise implications of pushing towards cavity volumes of 2 mL or less.
Keywords
Cite
@article{arxiv.2203.15915,
title = {Thermal noise-limited laser stabilization to an 8 mL volume Fabry-P\'erot reference cavity with microfabricated mirrors},
author = {Charles A. McLemore and Naijun Jin and Megan L. Kelleher and James P. Hendrie and David Mason and Yizhi Luo and Dahyeon Lee and Peter Rakich and Scott A. Diddams and Franklyn Quinlan},
journal= {arXiv preprint arXiv:2203.15915},
year = {2022}
}
Comments
7 pages, 4 figures