We derive a time-domain mean-field equation to model the full temporal and spectral dynamics of light in singly resonant cavity-enhanced second-harmonic generation systems. We show that the temporal walk-off between the fundamental and the second-harmonic fields plays a decisive role under realistic conditions, giving rise to rich, previously unidentified nonlinear behavior. Through linear stability analysis and numerical simulations, we discover a new kind of quadratic modulation instability which leads to the formation of optical frequency combs and associated time-domain dissipative structures. Our numerical simulations show excellent agreement with recent experimental observations of frequency combs in quadratic nonlinear media [Phys. R...
We theoretically investigate frequency comb generation in dispersive quadratically nonlinear resonat...
We numerically study, by means of the single envelope equation, the generation of optical frequency ...
Optical frequency comb synthesizers with a wide spectral range are an essential tool for many resear...
We derive a time-domain mean-field equation to model the full temporal and spectral dynamics of ligh...
We derive a time-domain mean-field equation to model the full temporal and spectral dynamics of ligh...
We theoretically study the generation of optical frequency combs and corresponding pulse trains in d...
Nonlinear interactions in quadratic materials have for long been used to replicate and extend optic...
We consider frequency comb generation in dispersive singly resonant second-harmonic-generation cavit...
We report a theoretical investigation of quadratic frequency combs in a dispersive second-harmonic g...
We theoretically investigate frequency comb generation in dispersive quadratically nonlinear resonat...
Continuously pumped passive nonlinear cavities can be harnessed for the creation of novel optical fr...
We present theoretical studies of optical frequency comb generation in dispersive quadratically nonl...
We theoretically investigate frequency comb generation in dispersive quadratically nonlinear resonat...
We numerically study, by means of the single envelope equation, the generation of optical frequency ...
Optical frequency comb synthesizers with a wide spectral range are an essential tool for many resear...
We derive a time-domain mean-field equation to model the full temporal and spectral dynamics of ligh...
We derive a time-domain mean-field equation to model the full temporal and spectral dynamics of ligh...
We theoretically study the generation of optical frequency combs and corresponding pulse trains in d...
Nonlinear interactions in quadratic materials have for long been used to replicate and extend optic...
We consider frequency comb generation in dispersive singly resonant second-harmonic-generation cavit...
We report a theoretical investigation of quadratic frequency combs in a dispersive second-harmonic g...
We theoretically investigate frequency comb generation in dispersive quadratically nonlinear resonat...
Continuously pumped passive nonlinear cavities can be harnessed for the creation of novel optical fr...
We present theoretical studies of optical frequency comb generation in dispersive quadratically nonl...
We theoretically investigate frequency comb generation in dispersive quadratically nonlinear resonat...
We numerically study, by means of the single envelope equation, the generation of optical frequency ...
Optical frequency comb synthesizers with a wide spectral range are an essential tool for many resear...