English

Dual-Comb Real-Time Molecular Fingerprint Imaging

Optics 2024-01-24 v1 Applied Physics

Abstract

Hyperspectral imaging provides spatially resolved spectral information. Utilising dual frequency combs as active illumination sources, hyperspectral imaging with ultra-high spectral resolution can be implemented in a scan-free manner when a detector array is used for heterodyne detection. However, relying on low-noise detector arrays, this approach is currently limited to the near-infrared regime. Here, we show that dual-comb hyperspectral imaging can be performed with an uncooled near-to-mid-infrared detector by exploiting the detector array's high frame-rate and the combs' high-mutual coherence. The system simultaneously acquires hyperspectral data in 30~spectral channels across 16'384 pixel, from which molecule-specific gas concentration images can be derived. Artificial intelligence enables rapid data reduction and real-time image reconstruction. Owing to the detector array's sensitivity from 1~μ\mum to 5~μ\mum wavelength, this demonstration lays the foundation for versatile imaging of molecular fingerprint signatures across the infrared wavelength-regime in real-time.

Keywords

Cite

@article{arxiv.2006.02115,
  title  = {Dual-Comb Real-Time Molecular Fingerprint Imaging},
  author = {T. Voumard and T. Wildi and V. Brasch and R. Gutiérrez Álvarez and G. Vergara Ogando and T. Herr},
  journal= {arXiv preprint arXiv:2006.02115},
  year   = {2024}
}
R2 v1 2026-06-23T16:01:11.210Z