We study the scattering of waves off a potential step in deformed honeycomb lattices. For deformations below a critical value, perfect Klein tunneling is obtained; i.e., a potential step transmits waves at normal incidence with nonresonant unit-transmission probability. Beyond the critical deformation a gap forms in the spectrum, and a potential step perpendicular to the deformation direction reflects all normally incident waves, exhibiting a dramatic transition form unit transmission to total reflection. These phenomena are generic to honeycomb lattices and apply to electromagnetic waves in photonic lattices, quasiparticles in graphene, and cold atoms in optical lattices
Band structure singularities occur in 2D photonic lattices when two or more bands intersect at a poi...
We study the interconversion between photons and phonons coupled via radiation pressure in artificia...
We analyse a little known aspect of the Klein paradox. A Klein-Gordon boson appears to be able to cr...
We study the scattering of waves off a potential step in deformed honeycomb lattices. For deformatio...
Klein tunneling is a counterintuitive quantum-mechanical phenomenon, predicting perfect transmission...
This article provides a pedagogical review on Klein tunneling in graphene, i.e. the peculi...
© 2022 American Physical Society.The Klein paradox consists in the perfect tunneling of relativistic...
We theoretically investigate the flow of electromagnetic waves in complex honeycomb photonic lattice...
We study the dynamics of coherent waves in nonlinear honeycomb lattices and show that nonlinearity b...
We calculate the transmission coefficient for a particle crossing a potential barrier in monolayer g...
Optical graphene, or an optical honeycomb waveguide, has become a material of much interest and exci...
We present an experimental observation of Klein tunneling of light waves in lattices of evanescently...
In the present work, we investigate how structural defects in graphene can change its transport prop...
Natural and artificial honeycomb lattices are of great interest because the band structure of these ...
The propagation of linear and nonlinear edge modes in bounded photonic honeycomb lattices formed by ...
Band structure singularities occur in 2D photonic lattices when two or more bands intersect at a poi...
We study the interconversion between photons and phonons coupled via radiation pressure in artificia...
We analyse a little known aspect of the Klein paradox. A Klein-Gordon boson appears to be able to cr...
We study the scattering of waves off a potential step in deformed honeycomb lattices. For deformatio...
Klein tunneling is a counterintuitive quantum-mechanical phenomenon, predicting perfect transmission...
This article provides a pedagogical review on Klein tunneling in graphene, i.e. the peculi...
© 2022 American Physical Society.The Klein paradox consists in the perfect tunneling of relativistic...
We theoretically investigate the flow of electromagnetic waves in complex honeycomb photonic lattice...
We study the dynamics of coherent waves in nonlinear honeycomb lattices and show that nonlinearity b...
We calculate the transmission coefficient for a particle crossing a potential barrier in monolayer g...
Optical graphene, or an optical honeycomb waveguide, has become a material of much interest and exci...
We present an experimental observation of Klein tunneling of light waves in lattices of evanescently...
In the present work, we investigate how structural defects in graphene can change its transport prop...
Natural and artificial honeycomb lattices are of great interest because the band structure of these ...
The propagation of linear and nonlinear edge modes in bounded photonic honeycomb lattices formed by ...
Band structure singularities occur in 2D photonic lattices when two or more bands intersect at a poi...
We study the interconversion between photons and phonons coupled via radiation pressure in artificia...
We analyse a little known aspect of the Klein paradox. A Klein-Gordon boson appears to be able to cr...