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    Online Resource
    Online Resource
    Springer Science and Business Media LLC ; 2024
    In:  Light: Science & Applications Vol. 13, No. 1 ( 2024-01-05)
    In: Light: Science & Applications, Springer Science and Business Media LLC, Vol. 13, No. 1 ( 2024-01-05)
    Abstract: Photoacoustic dual-comb spectroscopy (DCS), converting spectral information in the optical frequency domain to the audio frequency domain via multi-heterodyne beating, enables background-free spectral measurements with high resolution and broad bandwidth. However, the detection sensitivity remains limited due to the low power of individual comb lines and the lack of broadband acoustic resonators. Here, we develop cavity-enhanced photoacoustic DCS, which overcomes these limitations by using a high-finesse optical cavity for the power amplification of dual-frequency combs and a broadband acoustic resonator with a flat-top frequency response. We demonstrate high-resolution spectroscopic measurements of trace amounts of C 2 H 2 , NH 3 and CO in the entire telecommunications C-band. The method shows a minimum detection limit of 0.6 ppb C 2 H 2 at the measurement time of 100 s, corresponding to the noise equivalent absorption coefficient of 7 × 10 −10  cm −1 . The proposed cavity-enhanced photoacoustic DCS may open new avenues for ultrasensitive, high-resolution, and multi-species gas detection with widespread applications.
    Type of Medium: Online Resource
    ISSN: 2047-7538
    Language: English
    Publisher: Springer Science and Business Media LLC
    Publication Date: 2024
    detail.hit.zdb_id: 2662628-7
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