We demonstrate experimentally the localization of broad optical beams in periodic arrays of optical waveguides with defocusing nonlinearity. This observation in optics is linked to nonlinear self-trapping of Bose-Einstein-condensed atoms in stationary periodic potentials being associated with the generation of truncated nonlinear Bloch states, existing in the gaps of the linear transmission spectrum. We reveal that unlike gap solitons, these novel localized states can have an arbitrary width defined solely by the size of the input beam while independent of nonlinearity
We experimentally study light self-trapping in triangular photonic lattices induced optically in non...
This paper predicts theoretically and demonstrate experimentally novel possibilities for active cont...
The coherent transport of nonlinear waves is essential in many phenomena in nature. In contrast to l...
We demonstrate experimentally the localization of broad optical beams in periodic arrays of optical ...
We demonstrate experimentally the localization of broad beams in defocusing waveguide arrays. Unlike...
We predict a sharp crossover from self-defocusing to discrete localization in photonic lattices with...
We study dynamical reshaping of polychromatic beams due to collective nonlinear self-action of multi...
We demonstrate that the recent observation of nonlinear self-trapping of matter waves in one-dimensi...
We report on the observation of surface gap solitons found to exist at the interface between uniform...
We predict a sharp crossover from self-defocusing to discrete localization in photonic lattices with...
We predict, in the framework of a nonlinear discrete model, and demonstrate experimentally in defocu...
7We report the first experimental observation of nonlinear self-trapping of Bose-condensed Rb-87 ato...
We observe dipole-like gap solitons in two-dimensional waveguide lattices optically induced with a s...
We predict a sharp crossover from nonlinear self-defocusing to discrete self-trapping of a narrow Ga...
We study nonlinear propagation of light in diffractionmanaged photonic lattices created by periodic...
We experimentally study light self-trapping in triangular photonic lattices induced optically in non...
This paper predicts theoretically and demonstrate experimentally novel possibilities for active cont...
The coherent transport of nonlinear waves is essential in many phenomena in nature. In contrast to l...
We demonstrate experimentally the localization of broad optical beams in periodic arrays of optical ...
We demonstrate experimentally the localization of broad beams in defocusing waveguide arrays. Unlike...
We predict a sharp crossover from self-defocusing to discrete localization in photonic lattices with...
We study dynamical reshaping of polychromatic beams due to collective nonlinear self-action of multi...
We demonstrate that the recent observation of nonlinear self-trapping of matter waves in one-dimensi...
We report on the observation of surface gap solitons found to exist at the interface between uniform...
We predict a sharp crossover from self-defocusing to discrete localization in photonic lattices with...
We predict, in the framework of a nonlinear discrete model, and demonstrate experimentally in defocu...
7We report the first experimental observation of nonlinear self-trapping of Bose-condensed Rb-87 ato...
We observe dipole-like gap solitons in two-dimensional waveguide lattices optically induced with a s...
We predict a sharp crossover from nonlinear self-defocusing to discrete self-trapping of a narrow Ga...
We study nonlinear propagation of light in diffractionmanaged photonic lattices created by periodic...
We experimentally study light self-trapping in triangular photonic lattices induced optically in non...
This paper predicts theoretically and demonstrate experimentally novel possibilities for active cont...
The coherent transport of nonlinear waves is essential in many phenomena in nature. In contrast to l...