Article appears in Applied Physics Letters (http://apl.aip.org/) and is copyrighted by American Institute of Physics (http://www.aip.org/).The authors analyze electromagnetic modes in multilayered nanocomposites and demonstrate that\ud the response of a majority of realistic layered structures is strongly affected by the nonlocal effects\ud originating from strong field oscillations across the system, and is not described by conventional\ud effective-medium theories. They develop the analytical description of the relevant phenomena and\ud confirm their results with numerical solutions of Maxwell equations. Finally, the authors use the\ud developed formalism to demonstrate that multilayered plasmonic nanostructures support high-index\ud volu...
ABSTRACT: Semiclassical nonlocal optics based on the hydrodynamic description of conduction electron...
International audienceWe analyze the impact of nonlocality on the waveguide modes of metallo-dielect...
Nonlocal electromagnetic effects of graphene arise from its naturally dispersive dielectric response...
We analyze electromagnetic modes in multi-layered nano-composites and demonstrate that the response ...
We study layered metal-dielectric structures, which can be considered as a simple example of nanostr...
The field of plasmonics investigates how electromagnetic fields can be confined into sub- wavelength...
We consider multilayered metal-dielectric metamaterials composed of alternating nanolayers of two ty...
We analyze dispersion properties of layered metal-dielectric structures, which can be considered as ...
Light-matter interactions in a material may be dramatically influenced by the features of the medium...
We study nonlocality effects of a bulk plasmalike dielectric medium on the plasmon spectrum of a one...
A well-known challenge for fabricating metamaterials is to make unit cells significantly smaller tha...
Spatial nonlocality in the optical response of noble metals is shown to produce significant blue shi...
Optical metasurfaces have recently emerged as the game changer in light manipulation and opened up n...
We have accomplished rigorous dispersion analysis and showed clearly impact of nonlocality on proper...
© 2017 IOP Publishing Ltd. In this work, we present a rigorous approach for analyzing the optical re...
ABSTRACT: Semiclassical nonlocal optics based on the hydrodynamic description of conduction electron...
International audienceWe analyze the impact of nonlocality on the waveguide modes of metallo-dielect...
Nonlocal electromagnetic effects of graphene arise from its naturally dispersive dielectric response...
We analyze electromagnetic modes in multi-layered nano-composites and demonstrate that the response ...
We study layered metal-dielectric structures, which can be considered as a simple example of nanostr...
The field of plasmonics investigates how electromagnetic fields can be confined into sub- wavelength...
We consider multilayered metal-dielectric metamaterials composed of alternating nanolayers of two ty...
We analyze dispersion properties of layered metal-dielectric structures, which can be considered as ...
Light-matter interactions in a material may be dramatically influenced by the features of the medium...
We study nonlocality effects of a bulk plasmalike dielectric medium on the plasmon spectrum of a one...
A well-known challenge for fabricating metamaterials is to make unit cells significantly smaller tha...
Spatial nonlocality in the optical response of noble metals is shown to produce significant blue shi...
Optical metasurfaces have recently emerged as the game changer in light manipulation and opened up n...
We have accomplished rigorous dispersion analysis and showed clearly impact of nonlocality on proper...
© 2017 IOP Publishing Ltd. In this work, we present a rigorous approach for analyzing the optical re...
ABSTRACT: Semiclassical nonlocal optics based on the hydrodynamic description of conduction electron...
International audienceWe analyze the impact of nonlocality on the waveguide modes of metallo-dielect...
Nonlocal electromagnetic effects of graphene arise from its naturally dispersive dielectric response...