We investigate the self-trapping phenomenon in one-dimensional nonlinear waveguide arrays. We discuss various approximate analytical descriptions of the discrete self-trapped solutions. We analyze the packing, steering, and collision properties of these solutions, by means of a variational approach and soliton perturbation theory. We compare the analytical and numerical results
An effective method for controlling nonlinear switching of discrete solitons in arrays of weakly cou...
The excitation and propagation of both scalar and vector optical waves in one-dimensional nonlinear ...
Discrete optical systems are a subgroup of periodic structures in which the evolution of a continuou...
We discuss the formation of self-trapped localized states near the edge of a semi-infinite array of ...
We discuss the formation of self-trapped localized states near the edge of a semi-infinite array of...
We discuss the modeling of self-trapping in arrays of evanescently coupled optical waveguides with K...
We identify and investigate bimodal (vector) solitons in models of square-lattice arrays of nonlinea...
We report the first experimental observation of discrete vector solitons in AlGaAs nonlinear wavegui...
We report the first experimental observation of discrete vector solitons in AlGaAs nonlinear wavegui...
It is theoretically shown that discrete nonlinear surface waves are possible in waveguide lattices. ...
We predict a sharp crossover from self-defocusing to discrete localization in photonic lattices with...
We investigate numerically and experimentally the influence of coupling disorder on the self-trappin...
It is theoretically shown that discrete nonlinear surface waves are possible in waveguide lattices. ...
An effective method for controlling nonlinear switching of discrete solitons in arrays of weakly cou...
We investigate numerically and experimentally the influence of coupling disorder on the self-trappin...
An effective method for controlling nonlinear switching of discrete solitons in arrays of weakly cou...
The excitation and propagation of both scalar and vector optical waves in one-dimensional nonlinear ...
Discrete optical systems are a subgroup of periodic structures in which the evolution of a continuou...
We discuss the formation of self-trapped localized states near the edge of a semi-infinite array of ...
We discuss the formation of self-trapped localized states near the edge of a semi-infinite array of...
We discuss the modeling of self-trapping in arrays of evanescently coupled optical waveguides with K...
We identify and investigate bimodal (vector) solitons in models of square-lattice arrays of nonlinea...
We report the first experimental observation of discrete vector solitons in AlGaAs nonlinear wavegui...
We report the first experimental observation of discrete vector solitons in AlGaAs nonlinear wavegui...
It is theoretically shown that discrete nonlinear surface waves are possible in waveguide lattices. ...
We predict a sharp crossover from self-defocusing to discrete localization in photonic lattices with...
We investigate numerically and experimentally the influence of coupling disorder on the self-trappin...
It is theoretically shown that discrete nonlinear surface waves are possible in waveguide lattices. ...
An effective method for controlling nonlinear switching of discrete solitons in arrays of weakly cou...
We investigate numerically and experimentally the influence of coupling disorder on the self-trappin...
An effective method for controlling nonlinear switching of discrete solitons in arrays of weakly cou...
The excitation and propagation of both scalar and vector optical waves in one-dimensional nonlinear ...
Discrete optical systems are a subgroup of periodic structures in which the evolution of a continuou...