We study interaction of counterpropagating beams in truncated two-dimensional photonic lattices induced optically in photorefractive crystals, and demonstrate the existence of counterpropagating surface solitons localized in the lattice corners and at the edges. We display intriguing dynamical properties of such composite optical beams and reveal that the lattice surface provides a strong stabilization effect on the beam propagation. We also observe dynamical instabilities for stronger coupling and longer propagation distances in the form of beam splitting. No such instabilities exist in the single beam surface propagation
We present a theoretical analysis of the stability of photorefractive spatial solitons along with ex...
We report on the first observation of topologically stable spatially localized multivortex solitons ...
We theoretically investigate collision of optical beams traveling in opposite directions through a c...
We study numerically the interaction of two counterpropagating (CP) optical beams near the boundary ...
We report on the stabilization of inherently unstable counterpropagating photorefractive spatial so...
We discover that at the edge of optical lattice imprinted in saturable nonlinear media one-dimension...
We derive two systems of coupled-mode equations for spatial gap solitons in one-dimensional (1D) and...
The model equations for beam propagation in photorefractive material are simplified under appropriat...
The model equations for beam propagation in photorefractive material are simplified under appropriat...
We formulate an anisotropic nonlocal theory of the space charge field induced by the coherent counte...
We demonstrate experimentally that in a centrosymmetric paraelectric non-stationary boundary conditi...
Large two-dimensional spatial soliton arrays are generated experimentally and numerically in photore...
Considering nonlinear optical propagation through photorefractive crystals in which the bias voltage...
We propose and analyze a new type of phase conjugation between counterpropagating beams in photorefr...
We present a theoretical analysis of the stability of photorefractive spatial solitons along with ex...
We present a theoretical analysis of the stability of photorefractive spatial solitons along with ex...
We report on the first observation of topologically stable spatially localized multivortex solitons ...
We theoretically investigate collision of optical beams traveling in opposite directions through a c...
We study numerically the interaction of two counterpropagating (CP) optical beams near the boundary ...
We report on the stabilization of inherently unstable counterpropagating photorefractive spatial so...
We discover that at the edge of optical lattice imprinted in saturable nonlinear media one-dimension...
We derive two systems of coupled-mode equations for spatial gap solitons in one-dimensional (1D) and...
The model equations for beam propagation in photorefractive material are simplified under appropriat...
The model equations for beam propagation in photorefractive material are simplified under appropriat...
We formulate an anisotropic nonlocal theory of the space charge field induced by the coherent counte...
We demonstrate experimentally that in a centrosymmetric paraelectric non-stationary boundary conditi...
Large two-dimensional spatial soliton arrays are generated experimentally and numerically in photore...
Considering nonlinear optical propagation through photorefractive crystals in which the bias voltage...
We propose and analyze a new type of phase conjugation between counterpropagating beams in photorefr...
We present a theoretical analysis of the stability of photorefractive spatial solitons along with ex...
We present a theoretical analysis of the stability of photorefractive spatial solitons along with ex...
We report on the first observation of topologically stable spatially localized multivortex solitons ...
We theoretically investigate collision of optical beams traveling in opposite directions through a c...