Raman-induced Kerr-effect dual-comb spectroscopy
Abstract
We report on the first demonstration of nonlinear dual-frequency-comb spectroscopy. In multi-heterodyne femtosecond Raman-induced Kerr-effect spectroscopy, the Raman gain resulting from the coherent excitation of molecular vibrations by a spectrally-narrow pump is imprinted onto the femtosecond laser frequency comb probe spectrum. The birefringence signal induced by the nonlinear interaction of these beams and the sample is heterodyned against a frequency comb local oscillator with a repetition frequency slightly different from that of the comb probe. Such time-domain interference provides multiplex access to the phase and amplitude Raman spectra over a broad spectral bandwidth within a short measurement time. Experimental demonstration, at a spectral resolution of 200 GHz, a measurement time of 293 {\mu}s and a sensitivity of 10^-6, is given on liquid samples exhibiting a C-H stretch Raman shift.
Cite
@article{arxiv.1208.1145,
title = {Raman-induced Kerr-effect dual-comb spectroscopy},
author = {Takuro Ideguchi and Birgitta Bernhardt and Guy Guelachvili and Theodor W. Hänsch and Nathalie Picqué},
journal= {arXiv preprint arXiv:1208.1145},
year = {2017}
}
Comments
7 pages, 4 figures