English

Optical frequency comb spectroscopy at 3-5.4 {\mu}m with a doubly resonant optical parametric oscillator

Optics 2016-09-12 v1

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 CH4_4 and NO at ~3.3 {\mu}m and ~5.2 {\mu}m, respectively, and of atmospheric species (CH4_4, CO, CO2_2 and H2_2O) in air in the signal and idler wavelength range. The figure of merit of the system is on the order of 108^{-8} cm1^{-1} Hz1/2^{-1/2} per spectral element, and multiline fitting yields minimum detectable concentrations of 10-20 ppb Hz1/2^{-1/2} for CH4_4, 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 CH4_4 and H2_2O 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}
}