4.7 Article

Nanophotonic supercontinuum-based mid-infrared dual-comb spectroscopy

期刊

OPTICA
卷 7, 期 9, 页码 1181-1188

出版社

OPTICAL SOC AMER
DOI: 10.1364/OPTICA.396542

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资金

  1. Defense Advanced Research Projects Agency [W31P4Q-16-1-0002]
  2. Air Force Office of Scientific Research [FA9550-19-1-0250]
  3. Schweizerischer Nationalfonds zur Forderung der Wissenschaftlichen Forschung [163864, 200021 n_178895]
  4. H2020 Marie Sklodowska-Curie Actions [753749]
  5. National Natural Science Foundation of China [11974234]
  6. Shanghai Science and Technology Development Foundation [20QA1403500]
  7. Program for Professor of Special Appointment (Eastern Scholar) at Shanghai Institutions of Higher Learning

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High resolution and fast detection of molecular vibrational absorption is important for organic synthesis, pharmaceutical processes, and environmental monitoring, and is enabled by mid-infrared (mid-IR) laser frequency combs via dual-comb spectroscopy. Here, we demonstrate a novel and highly simplified approach to broadband mid-IR dual-comb spectroscopy via supercontinuum generation, achieved using unprecedented nanophotonic dispersion engineering that allows for ultra-broadband and flat-envelope mid-IR frequency combs. Our mid-IR dual-comb spectrometer has an instantaneous bandwidth covering the functional group region from 2800-3600 cm(-1), comprising more than 100,000 comb lines, enabling parallel gas-phase detection with a high sensitivity, sub-Doppler spectral resolution, and a high speed. In addition to the traditional functional groups, their isotopologues are also resolved in this supercontinuum-based dual-comb spectroscopy. Our approach combines well established fiber laser combs, digital coherent data averaging, and integrated nonlinear photonics, each in itself a state-of-the-art technology, signaling the emergence of mid-IR dual-comb spectroscopy for use outside of the protected laboratory environment. (C) 2020 Optical Society of America under the terms of the OSA Open Access Publishing Agreement

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