Parametrically tunable soliton-induced resonant radiation by three-wave mixing
Abstract
We show that a temporal soliton can induce resonant radiation by three-wave mixing nonlinearities. This constitutes a new class of resonant radiation whose spectral positions are parametrically tunable. The experimental verification is done in a periodically poled lithium niobate crystal, where a femtosecond near-IR soliton is excited and resonant radiation waves are observed exactly at the calculated soliton phase-matching wavelengths via the sum- and difference-frequency generation nonlinearities. This extends the supercontinuum bandwidth well into the mid-IR to span 550-5000 nm and the mid-IR edge is parametrically tunable over 1000 nm by changing the three-wave mixing phase-matching condition. The results are important for bright and broadband supercontinuum generation and for frequency comb generation in quadratic nonlinear microresonators.
Keywords
Cite
@article{arxiv.1606.00572,
title = {Parametrically tunable soliton-induced resonant radiation by three-wave mixing},
author = {B. Zhou and X. Liu and H. R. Guo and X. L. Zeng and X. F. Chen and H. P. Chung and Y. H. Chen and M. Bache},
journal= {arXiv preprint arXiv:1606.00572},
year = {2017}
}
Comments
in press, Physical Review Letters