Historically, the field of plasmonics has been relying on the framework of classical electrodynamics, with the local-response approximation of material response being applied even when dealing with nanoscale metallic structures. However, when the confinement of electromagnetic radiation approaches atomic scales, mesoscopic effects are anticipated to become observable, e.g., those associated with the nonlocal electrodynamic surface response of the electron gas. Here, we investigate nonlocal effects in propagating gap surface plasmon modes in ultrathin metal-dielectric-metal planar waveguides, exploiting monocrystalline gold flakes separated by atomic-layer-deposited aluminum oxide. We use scanning near-field optical microscopy to directly ac...
Dispersion properties of metals and propagation of quantum plasmons in the high photon energy range ...
The advances in recent nanofabrication techniques have facilitated explorations of metal structures ...
Tailoring coupled plasmonic structures is an alternative way to obtain new optical properties of pla...
Historically, the field of plasmonics has been relying on the framework of classical electrodynamics...
The field of plasmonics investigates how electromagnetic fields can be confined into sub- wavelength...
International audienceWe analyze the impact of nonlocality on the waveguide modes of metallo-dielect...
Inspired by recent measurements on individual metallic nanospheres that cannot be explained with tra...
Spatial nonlocality in the optical response of noble metals is shown to produce significant blue shi...
© 2020 Optical Society of America under the terms of the OSA Open Access Publishing Agreement. With ...
This manuscript is mainly focused on the influence of repulsion between free electrons on the optica...
This manuscript is mainly focused on the influence of repulsion between free electrons on the optica...
This manuscript is mainly focused on the influence of repulsion between free electrons on the optica...
With advances in nanofabrication techniques, extreme-scale nanophotonic devices with critical gap di...
With advances in nanofabrication techniques, extreme-scale nanophotonic devices with critical gap di...
ABSTRACT: Semiclassical nonlocal optics based on the hydrodynamic description of conduction electron...
Dispersion properties of metals and propagation of quantum plasmons in the high photon energy range ...
The advances in recent nanofabrication techniques have facilitated explorations of metal structures ...
Tailoring coupled plasmonic structures is an alternative way to obtain new optical properties of pla...
Historically, the field of plasmonics has been relying on the framework of classical electrodynamics...
The field of plasmonics investigates how electromagnetic fields can be confined into sub- wavelength...
International audienceWe analyze the impact of nonlocality on the waveguide modes of metallo-dielect...
Inspired by recent measurements on individual metallic nanospheres that cannot be explained with tra...
Spatial nonlocality in the optical response of noble metals is shown to produce significant blue shi...
© 2020 Optical Society of America under the terms of the OSA Open Access Publishing Agreement. With ...
This manuscript is mainly focused on the influence of repulsion between free electrons on the optica...
This manuscript is mainly focused on the influence of repulsion between free electrons on the optica...
This manuscript is mainly focused on the influence of repulsion between free electrons on the optica...
With advances in nanofabrication techniques, extreme-scale nanophotonic devices with critical gap di...
With advances in nanofabrication techniques, extreme-scale nanophotonic devices with critical gap di...
ABSTRACT: Semiclassical nonlocal optics based on the hydrodynamic description of conduction electron...
Dispersion properties of metals and propagation of quantum plasmons in the high photon energy range ...
The advances in recent nanofabrication techniques have facilitated explorations of metal structures ...
Tailoring coupled plasmonic structures is an alternative way to obtain new optical properties of pla...