Abstract
We demonstrate a simple interferometric technique to directly measure the complex optical transmittance over a large spectral range using a frequency-comb spectrometer based on a virtually imaged phased array. A Michelson interferometer encodes the phase deviations induced by a sample contained in one of its arms into an interferogram image. When combined with an additional image taken from each arm separately, along with a frequency-calibration image, this allows full reconstruction of the sample's optical transfer function. We demonstrate the technique with a vapor cell containing H13C14N, producing transmittance and phase spectra spanning 2.9 THz (∼23 nm) with ∼1 GHz resolution. © 2016 Optical Society of America.
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CITATION STYLE
Scholten, S. K., Anstie, J. D., Hébert, N. B., White, R. T., Genest, J., & Luiten, A. N. (2016). Complex direct comb spectroscopy with a virtually imaged phased array. Optics Letters, 41(6), 1277. https://doi.org/10.1364/ol.41.001277
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