Optical frequency comb spectroscopy at 3-5.4 {\mu}m with a doubly resonant optical parametric oscillator
Abstract
We present a versatile mid-infrared frequency comb spectroscopy system based on a doubly resonant optical parametric oscillator tunable in the 3-5.4 {\mu}m range and two detection methods, a Fourier transform spectrometer (FTS) and a Vernier spectrometer. Using the FTS with a multipass cell we measure high-precision broadband absorption spectra of CH and NO at ~3.3 {\mu}m and ~5.2 {\mu}m, respectively, and of atmospheric species (CH, CO, CO and HO) in air in the signal and idler wavelength range. The figure of merit of the system is on the order of 10 cm Hz per spectral element, and multiline fitting yields minimum detectable concentrations of 10-20 ppb Hz for CH, NO and CO. For the first time in the mid-infrared, we perform continuous-filtering Vernier spectroscopy using a low finesse enhancement cavity, a grating and a single detector, and measure the absorption spectrum of CH and HO in ambient air at ~3.3 {\mu}m.
Keywords
Cite
@article{arxiv.1603.09680,
title = {Optical frequency comb spectroscopy at 3-5.4 {\mu}m with a doubly resonant optical parametric oscillator},
author = {Amir Khodabakhsh and Venkata Ramaiah-Badarla and Lucile Rutkowski and Alexandra C. Johansson and Kevin F. Lee and Jie Jiang and Christian Mohr and Martin E. Fermann and Aleksandra Foltynowicz},
journal= {arXiv preprint arXiv:1603.09680},
year = {2016}
}