Multiple-octave spanning mid-IR supercontinuum generation in bulk quadratic nonlinear crystals
Abstract
Bright and broadband coherent mid-IR radiation is important for exciting and probing molecular vibrations. Using cascaded nonlinearities in conventional quadratic nonlinear crystal like lithium niobate, self-defocusing near-IR solitons have been demonstrated that led to very broadband supercontinuum generation in the visible, near-IR and short-wavelength mid-IR. Here we conduct an experiment where a mid-IR crystal pumped in the mid-IR gives multiple-octave spanning supercontinua. The crystal is cut for noncritical interaction, so the three-wave mixing of a single mid-IR femtosecond pump source leads to highly phase-mismatched second-harmonic generation. This self-acting cascaded process leads to the formation of a self-defocusing soliton at the mid-IR pump wavelength and after the self-compression point multiple octave-spanning supercontinua are observed (covering 1.6-m). The results were recorded in a commercially available crystal LiInS pumped in the 3-m range, but other mid-IR crystals can readily be used as well.
Cite
@article{arxiv.1603.05804,
title = {Multiple-octave spanning mid-IR supercontinuum generation in bulk quadratic nonlinear crystals},
author = {Binbin Zhou and Morten Bache},
journal= {arXiv preprint arXiv:1603.05804},
year = {2016}
}
Comments
submitted to APL Photonics