High power continuous laser at 461 nm based on a compact and high-efficiency frequency-doubling linear cavity
Abstract
A Watt-level continuous and single frequency blue laser at 461 nm is obtained by frequency-doubling an amplified diode laser operating at 922 nm via a LBO crystal in a resonant Fabry-P\'{e}rot cavity. We achieved a best optical conversion efficiency equal to 87\% with more than 1 W output power in the blue, and limited by the available input power. The frequency-converted beam is characterized in terms of long term power stability, residual intensity noise, and geometrical shape. The blue beam has a linewidth of the order of 1 MHz, and we used it to magneto-optically trap Sr atoms on the 5sS -- 5s5pP transition. The low-finesse, linear-cavity doubling system is very robust, maintains the lock for several days, and is compatible with a tenfold increase of the power levels which could be obtained with fully-fibered amplifiers and large mode area fibers.
Keywords
Cite
@article{arxiv.2106.07389,
title = {High power continuous laser at 461 nm based on a compact and high-efficiency frequency-doubling linear cavity},
author = {Chen-Hao Feng and Sébastien Vidal and Paul Robert and Philippe Bouyer and Bruno Desruelle and Marco Prevedelli and Johan Boullet and Giorgio Santarelli and Andrea Bertoldi},
journal= {arXiv preprint arXiv:2106.07389},
year = {2021}
}
Comments
8 pages, 4 figures