Compressed Sensing of Field-Resolved Molecular Fingerprints Beyond the Nyquist Frequency

Author:

Scheffter Kilian12,Will Jonathan12,Riek Claudius3,Jousselin Herve4,Coudreau Sébastien4,Forget Nicolas4,Fattahi Hanieh12ORCID

Affiliation:

1. Max Planck Institute for the Science of Light, Staudtstr. 2, 91058 Erlangen, Germany.

2. Friedrich-Alexander University Erlangen-Nürnberg, Staudtrstr. 7, 91058 Erlangen, Germany.

3. Zurich Instruments Germany, Mühldorfstraße 15, 81671 Munich, Germany.

4. Fastlite, rue des Cistes 165, 06600 Antibes, France.

Abstract

Ultrashort time-domain spectroscopy and field-resolved spectroscopy of molecular fingerprints are gold standards for detecting samples’ constituents and internal dynamics. However, they are hindered by the Nyquist criterion, leading to prolonged data acquisition, processing times, and sizable data volumes. In this work, we present the first experimental demonstration of compressed sensing on field-resolved molecular fingerprinting by employing random scanning. Our measurements enable pinpointing the primary absorption peaks of atmospheric water vapor in response to terahertz light transients while sampling beyond the Nyquist limit. By drastically undersampling the electric field of the molecular response at a Nyquist frequency of 0.8 THz, we could successfully identify water absorption peaks up to 2.5 THz with a mean squared error of 12 × 10 −4 . To our knowledge, this is the first experimental demonstration of time-domain compressed sensing, paving the path toward real-time field-resolved fingerprinting and acceleration of advanced spectroscopic techniques.

Publisher

American Association for the Advancement of Science (AAAS)

Reference50 articles.

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5. Spectrometry with frequency combs

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