We develop an asymptotic analysis of nonlinear energy propagation in lattices subject to slowly varying perturbations, investigating symmetry breaking and its effects. We derive a general set of evolution equations and study them by using catastrophe theory, revealing a wealth of system dynamics. Below a power threshold, symmetry breaking drives nonreciprocal oscillations; beyond that, symmetry breaking yields an effect of "macroscopic" self-trapping, which supports a self-maintained energy imbalance between Bloch bands. We numerically verify the theoretical results and discuss their possible implementation in waveguide arrays
We study managing of light beam propagation by competing disorder and nonlinearity in one-dimensiona...
We investigate the onset of parity-time (PT) symmetry breaking in non-Hermitian tight-binding lattic...
We investigate the onset of parity-time (PT) symmetry breaking in non-Hermitian tight-binding lattic...
We develop an asymptotic analysis of nonlinear energy propagation in lattices subject to slowly vary...
We investigate numerically and experimentally the influence of coupling disorder on the self-trappin...
We investigate numerically and experimentally the influence of coupling disorder on the self-trappin...
We investigate numerically and experimentally the influence of coupling disorder on the self-trappin...
We investigate energy propagation in a perturbed optical lattice, studying the nonlinear adiabatic e...
We investigate numerically and experimentally the influence of coupling disorder on the self-trappin...
We examine one- and two-dimensional models of linearly coupled lattices of the discrete-nonlinear-Sc...
We investigate energy propagation in a perturbed optical lattice, studying the nonlinear adiabatic e...
We examine one- and two-dimensional models of linearly coupled lattices of the discrete-nonlinear-Sc...
We examine one- and two-dimensional models of linearly coupled lattices of the discrete-nonlinear-Sc...
We investigate numerically and experimentally the influence of coupling disorder on the self-trappin...
We investigate the onset of parity-time (PT) symmetry breaking in non-Hermitian tight-binding lattic...
We study managing of light beam propagation by competing disorder and nonlinearity in one-dimensiona...
We investigate the onset of parity-time (PT) symmetry breaking in non-Hermitian tight-binding lattic...
We investigate the onset of parity-time (PT) symmetry breaking in non-Hermitian tight-binding lattic...
We develop an asymptotic analysis of nonlinear energy propagation in lattices subject to slowly vary...
We investigate numerically and experimentally the influence of coupling disorder on the self-trappin...
We investigate numerically and experimentally the influence of coupling disorder on the self-trappin...
We investigate numerically and experimentally the influence of coupling disorder on the self-trappin...
We investigate energy propagation in a perturbed optical lattice, studying the nonlinear adiabatic e...
We investigate numerically and experimentally the influence of coupling disorder on the self-trappin...
We examine one- and two-dimensional models of linearly coupled lattices of the discrete-nonlinear-Sc...
We investigate energy propagation in a perturbed optical lattice, studying the nonlinear adiabatic e...
We examine one- and two-dimensional models of linearly coupled lattices of the discrete-nonlinear-Sc...
We examine one- and two-dimensional models of linearly coupled lattices of the discrete-nonlinear-Sc...
We investigate numerically and experimentally the influence of coupling disorder on the self-trappin...
We investigate the onset of parity-time (PT) symmetry breaking in non-Hermitian tight-binding lattic...
We study managing of light beam propagation by competing disorder and nonlinearity in one-dimensiona...
We investigate the onset of parity-time (PT) symmetry breaking in non-Hermitian tight-binding lattic...
We investigate the onset of parity-time (PT) symmetry breaking in non-Hermitian tight-binding lattic...