Abstract
We demonstrate the precision molecular spectroscopy of using a free-running, all-fiber dual electro-optic frequency comb system. Successive interferograms, acquired at a rate of , were phase-corrected in post-processing, averaged, and normalized to yield the complex transmission spectrum of several transitions within the band centered near . With spectral signal-to-noise ratios as high as 326:1 achieved in 2 ms of integration time, we report accurate measurements of transition intensities which will aid in the study of extreme astrophysical environments.
© 2018 Optical Society of America
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