Mid-infrared supermirrors with finesse exceeding 400 000
Abstract
For trace gas sensing and precision spectroscopy, optical cavities incorporating low-loss mirrors are indispensable for path length and optical intensity enhancement. Optical interference coatings in the visible and near-infrared (NIR) spectral regions have achieved total optical losses below 2 parts per million (ppm), enabling a cavity finesse in excess of 1 million. However, such advancements have been lacking in the mid-infrared (MIR), despite substantial scientific interest. Here, we demonstrate a significant breakthrough in high-performance MIR mirrors, reporting substrate-transferred single-crystal interference coatings capable of cavity finesse values from 200 000 to 400 000 near 4.5 um, with excess optical losses (scatter and absorption) below 5 ppm. In a first proof-of-concept demonstration, we achieve the lowest noise-equivalent absorption in a linear cavity ring-down spectrometer normalized by cavity length. This substantial improvement in performance will unlock a rich variety of MIR applications for atmospheric transport and environmental sciences, detection of fugitive emissions, process gas monitoring, breath-gas analysis, and verification of biogenic fuels and plastics.
Keywords
Cite
@article{arxiv.2209.09902,
title = {Mid-infrared supermirrors with finesse exceeding 400 000},
author = {G. -W. Truong and L. W. Perner and D. M. Bailey and G. Winkler and S. B. Cataño-Lopez and V. J. Wittwer and T. Sudmeyer and C. Nguyen and D. Follman and A. J. Fleisher and O. H. Heckl and G. D. Cole},
journal= {arXiv preprint arXiv:2209.09902},
year = {2023}
}
Comments
Sept 21: Minor revisions to conform to 2-page length requirement including abbr. refs.; Figure font sizes increased Jul 24: Major revisions, including hybrid mirrors and spectroscopy