We review the theory of light localization due to the combined action of single or double Bragg coupling between dichromatic counterpropagating envelopes and parametric mixing nonlinearities. We discuss existence, stability, and excitation of such localized envelopes. We also investigate the link between stationary gap solitons and input-output response of nonlinear quadratic Bragg gratings. Frustrated transmission and multistable switching is expected to occur under suitable integrable (cascading) limits. Substantial deviations from these conditions lead to the onset of spatial chaos. (C) 2000 American Institute of Physics. [S1054-1500(00)00903-4]
A method is proposed to generate and study the dynamics of spatial light solitons in a birefringent ...
We predict that the combined effect of quadratic nonlinearity and dispersion induced by a periodic v...
The chapter reviews the propagation in periodic 1D media with quadratic response, with specific emph...
In a waveguide for second-harmonic generation, a linear corrugation able to couple counterpropagatin...
Optical nonlinearity and feedback through Bragg periodicity are the basic ingredients for light loca...
Optical nonlinearity and feedback through Bragg periodicity are the basic ingredients for light loca...
Chapter 9: In 1979 Winful et al. showed theoretically that the transmission of a nonlinear Bragg gra...
Energy localization and Bragg solitons can be sustained by the interplay of distributed feedback and...
Localized energy states such as two-color gap solitons are theoretically and numerically predicted i...
Localized energy states such as two-color gap solitons are theoretically and numerically predicted i...
We address the important problem of excitation of gap solitons of a parametric nature, which are sus...
We investigate electromagnetic localization in a nonlinear photonic crystal, i.e., a structure with ...
Solitons are studied in a model of a fiber Bragg grating (BG) whose local reflectivity is subjected ...
We report exact stationary localized solutions of the coupled-mode equations which describe two-colo...
We investigate electromagnetic localization in a nonlinear photonic crystal, i.e., a structure with ...
A method is proposed to generate and study the dynamics of spatial light solitons in a birefringent ...
We predict that the combined effect of quadratic nonlinearity and dispersion induced by a periodic v...
The chapter reviews the propagation in periodic 1D media with quadratic response, with specific emph...
In a waveguide for second-harmonic generation, a linear corrugation able to couple counterpropagatin...
Optical nonlinearity and feedback through Bragg periodicity are the basic ingredients for light loca...
Optical nonlinearity and feedback through Bragg periodicity are the basic ingredients for light loca...
Chapter 9: In 1979 Winful et al. showed theoretically that the transmission of a nonlinear Bragg gra...
Energy localization and Bragg solitons can be sustained by the interplay of distributed feedback and...
Localized energy states such as two-color gap solitons are theoretically and numerically predicted i...
Localized energy states such as two-color gap solitons are theoretically and numerically predicted i...
We address the important problem of excitation of gap solitons of a parametric nature, which are sus...
We investigate electromagnetic localization in a nonlinear photonic crystal, i.e., a structure with ...
Solitons are studied in a model of a fiber Bragg grating (BG) whose local reflectivity is subjected ...
We report exact stationary localized solutions of the coupled-mode equations which describe two-colo...
We investigate electromagnetic localization in a nonlinear photonic crystal, i.e., a structure with ...
A method is proposed to generate and study the dynamics of spatial light solitons in a birefringent ...
We predict that the combined effect of quadratic nonlinearity and dispersion induced by a periodic v...
The chapter reviews the propagation in periodic 1D media with quadratic response, with specific emph...