Efficient supercontinuum generation in quadratic nonlinear waveguides without quasi-phase matching
Abstract
Efficient supercontinuum generation (SCG) requires excitation of solitons at the pump laser wavelength. Quadratic nonlinear waveguides may support an effective self-defocusing nonlinearity so solitons can directly be generated at common ultrafast laser wavelengths without any waveguide dispersion engineering. We here experimentally demonstrate efficient SCG in a standard lithium niobate (LN) waveguide without using quasi-phase matching (QPM). By using femtosecond pumps with wavelengths in the range, where LN has normal dispersion and thus supports self-defocusing solitons, octave-spanning SCG is observed. An optimized mid-IR waveguide design is expected to support even broader spectra. The QPM-free design reduces production complexity, allows longer waveguides, limits undesired spectral resonances and effectively allows using nonlinear crystals where QPM is inefficient or impossible. This result is important for mid-IR SCG, where QPM-free self-defocusing waveguides in common mid-IR nonlinear crystals can support solitons directly at mid-IR ultrafast laser wavelengths, where these waveguides have normal dispersion.
Cite
@article{arxiv.1412.3226,
title = {Efficient supercontinuum generation in quadratic nonlinear waveguides without quasi-phase matching},
author = {Hairun Guo and Binbin Zhou and Michael Steinert and Frank Setzpfandt and Thomas Pertsch and Hung-ping Chung and Yen-Hung Chen and Morten Bache},
journal= {arXiv preprint arXiv:1412.3226},
year = {2015}
}
Comments
To appear in Optics Letters