4.8 Article

Massively parallel sensing of trace molecules and their isotopologues with broadband subharmonic mid-infrared frequency combs

Journal

NATURE PHOTONICS
Volume 12, Issue 4, Pages 209-+

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/s41566-018-0135-2

Keywords

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Funding

  1. Office of Naval Research (ONR) [N00014-15-1-2659]
  2. Defense Advanced Research Projects Agency (DARPA) [W31P4Q-15-1-0008]
  3. National Science Foundation [1144246]
  4. Direct For Education and Human Resources
  5. Division Of Graduate Education [1144246] Funding Source: National Science Foundation

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Mid-infrared spectroscopy offers supreme sensitivity for the detection of trace gases, solids and liquids based on tell-tale vibrational bands specific to this spectral region. Here, we present a new platform for mid-infrared dual-comb Fourier-transform spectroscopy based on a pair of ultra-broadband subharmonic optical parametric oscillators pumped by two phase-locked thulium-fibre combs. Our system provides fast (7 ms for a single interferogram), moving-parts-free, simultaneous acquisition of 350,000 spectral data points, spaced by a 115 MHz intermodal interval over the 3.1-5.5 mu m spectral range. Parallel detection of 22 trace molecular species in a gas mixture, including isotopologues containing isotopes such as C-13, O-18, O-17, N-15, S-34, S-33 and deuterium, with part-per-billion sensitivity and sub-Doppler resolution is demonstrated. The technique also features absolute optical frequency referencing to an atomic clock, a high degree of mutual coherence between the two mid-infrared combs with a relative comb-tooth linewidth of 25 mHz, coherent averaging and feasibility for kilohertz-scale spectral resolution.

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