The propagation of linear and nonlinear edge modes in bounded photonic honeycomb lattices formed by an array of rapidly varying helical waveguides is studied. These edge modes are found to exhibit strong transmission (reflection) around sharp corners when the dispersion relation is topologically nontrivial (trivial). An asymptotic theory is developed that establishes the presence (absence) of typical edge states, including, in particular, armchair and zigzag edge states in the topologically nontrivial (trivial) case. In the presence of topological protection, nonlinear edge solitons can persist over very long distances
Transmission of linear edge mode. Originally published in Optics Letters on 15 October 2015 (ol-40-2...
We report on a non-linear scattering effect that challenges the notion of topological protection for...
Topological insulators are unique physical structures that are insulators in their bulk, but support...
The propagation of linear and nonlinear edge modes in bounded photonic honeycomb lattices formed by ...
The propagation of localized edge modes in photonic honeycomb lattices, formed from an array of adia...
Traveling unidirectional localized edge states in optical honeycomb lattices are analytically constr...
We discuss three examples of different physical systems where the energy localization occurs at the ...
Optical graphene, or an optical honeycomb waveguide, has become a material of much interest and exci...
We report localized and unidirectional nonlinear traveling edge waves in a 2D mechanical (phononic) ...
Topological photonics has emerged recently as a novel approach for realizing robust optical circuitr...
We show theoretically that a photonic topological insulator can support edge solitons that are stron...
We study continuations of topological edge states in the Su-Schrieffer-Heeger model with on-site cub...
In condensed matter physics, the peculiar Dirac dynamics of electrons in graphene enables a plethora...
Topological insulators are unique physical structures that are insulators in their bulk, but support...
The flourishing of topological photonics in the last decade was achieved mainly due to developments ...
Transmission of linear edge mode. Originally published in Optics Letters on 15 October 2015 (ol-40-2...
We report on a non-linear scattering effect that challenges the notion of topological protection for...
Topological insulators are unique physical structures that are insulators in their bulk, but support...
The propagation of linear and nonlinear edge modes in bounded photonic honeycomb lattices formed by ...
The propagation of localized edge modes in photonic honeycomb lattices, formed from an array of adia...
Traveling unidirectional localized edge states in optical honeycomb lattices are analytically constr...
We discuss three examples of different physical systems where the energy localization occurs at the ...
Optical graphene, or an optical honeycomb waveguide, has become a material of much interest and exci...
We report localized and unidirectional nonlinear traveling edge waves in a 2D mechanical (phononic) ...
Topological photonics has emerged recently as a novel approach for realizing robust optical circuitr...
We show theoretically that a photonic topological insulator can support edge solitons that are stron...
We study continuations of topological edge states in the Su-Schrieffer-Heeger model with on-site cub...
In condensed matter physics, the peculiar Dirac dynamics of electrons in graphene enables a plethora...
Topological insulators are unique physical structures that are insulators in their bulk, but support...
The flourishing of topological photonics in the last decade was achieved mainly due to developments ...
Transmission of linear edge mode. Originally published in Optics Letters on 15 October 2015 (ol-40-2...
We report on a non-linear scattering effect that challenges the notion of topological protection for...
Topological insulators are unique physical structures that are insulators in their bulk, but support...