Computational coherent averaging for free-running dual-comb spectroscopy
Abstract
Dual-comb spectroscopy is a rapidly developing technique that enables moving parts-free, simultaneously broadband and high-resolution measurements with microseconds of acquisition time. However, for high sensitivity measurements and extended duration of operation, a coherent averaging procedure is essential. To date, most coherent averaging schemes require additional electro-optical components, which increase system complexity and cost. Instead, we propose an all-computational solution that is compatible with real-time architectures and allows for coherent averaging of spectra generated by free-running systems. The efficacy of the computational correction algorithm is demonstrated using spectra acquired with a THz quantum cascade laser-based dual-comb spectrometer.
Cite
@article{arxiv.1805.11146,
title = {Computational coherent averaging for free-running dual-comb spectroscopy},
author = {Lukasz A. Sterczewski and Jonas Westberg and Gerard Wysocki},
journal= {arXiv preprint arXiv:1805.11146},
year = {2019}
}
Comments
15 pages, 9 figures