We present theoretical studies of optical frequency comb generation in dispersive quadratically nonlinear resonators. We introduce a mean field equation approach to model cavity enhanced second harmonic generation and find excellent agreement with recent experimental frequency comb observations. We also develop a more general approach based on a single envelope equation for both quadratic and Kerr nonlinear cavities
Nonlinear interactions in quadratic materials have for long been used to replicate and extend optica...
We derive a time-domain mean-field equation to model the full temporal and spectral dynamics of ligh...
We theoretically investigate the formation of frequency combs in a dispersive second-harmonic genera...
We present theoretical studies of optical frequency comb generation in dispersive quadratically nonl...
We present theoretical studies of optical frequency comb generation in dispersive quadratically nonl...
We present theoretical studies of optical frequency comb generation in dispersive quadratically nonl...
We present theoretical studies of optical frequency comb generation in dispersive quadratically nonl...
Optical frequency comb sources based on three-wave-mixing in quadratic nonlinear materials allow for...
We discuss recent advances in the modelling of optical frequency comb generation in quadratic and cu...
We theoretically investigate frequency comb generation in dispersive quadratically nonlinear resonat...
Nonlinear interactions in quadratic materials have for long been used to replicate and extend optic...
Optical frequency combs are one of the most remarkable inventions in recent decades. Originally con...
We theoretically investigate frequency comb generation in dispersive quadratically nonlinear resonat...
We theoretically investigate frequency comb generation in dispersive quadratically nonlinear resonat...
Continuously-driven microresonators, whose nonlinear response is dominated by the third-order Kerr n...
Nonlinear interactions in quadratic materials have for long been used to replicate and extend optica...
We derive a time-domain mean-field equation to model the full temporal and spectral dynamics of ligh...
We theoretically investigate the formation of frequency combs in a dispersive second-harmonic genera...
We present theoretical studies of optical frequency comb generation in dispersive quadratically nonl...
We present theoretical studies of optical frequency comb generation in dispersive quadratically nonl...
We present theoretical studies of optical frequency comb generation in dispersive quadratically nonl...
We present theoretical studies of optical frequency comb generation in dispersive quadratically nonl...
Optical frequency comb sources based on three-wave-mixing in quadratic nonlinear materials allow for...
We discuss recent advances in the modelling of optical frequency comb generation in quadratic and cu...
We theoretically investigate frequency comb generation in dispersive quadratically nonlinear resonat...
Nonlinear interactions in quadratic materials have for long been used to replicate and extend optic...
Optical frequency combs are one of the most remarkable inventions in recent decades. Originally con...
We theoretically investigate frequency comb generation in dispersive quadratically nonlinear resonat...
We theoretically investigate frequency comb generation in dispersive quadratically nonlinear resonat...
Continuously-driven microresonators, whose nonlinear response is dominated by the third-order Kerr n...
Nonlinear interactions in quadratic materials have for long been used to replicate and extend optica...
We derive a time-domain mean-field equation to model the full temporal and spectral dynamics of ligh...
We theoretically investigate the formation of frequency combs in a dispersive second-harmonic genera...