A local model of the dielectric response of a metal predicts that singular surfaces, such as sharp-edged structures, have a continuous absorption spectrum and extreme concentration of energy at the singularity. Here, we show that nonlocality drastically alters this picture: The spectrum is now discrete and the energy concentration, though still substantial, is greatly reduced
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...
International audienceRecent experiments have shown that spatial dispersion may have a conspicuous i...
Singular graphene metasurfaces, conductivity gratings realized by periodically suppressing the local...
Singular graphene metasurfaces, conductivity gratings realized by periodically suppressing the local...
The field of plasmonics investigates how electromagnetic fields can be confined into sub- wavelength...
The effect of nonlocality on the optical response of metals lies at the forefront of research in nan...
International audienceWe analyze the impact of nonlocality on the waveguide modes of metallo-dielect...
Surface plasmons dominate the optical response of metal surfaces, and their nature is controlled by ...
We provide theoretical and numerical tools to quantitatively study the impact of nonlocality arising...
The singular plasmonic metasurfaces differ from the conventional metasurface, as they are featured w...
International audienceRecent experiments have shown that spatial dispersion may have a conspicuous i...
Metals support surface plasmons at optical wavelengths and have the ability to localize light to sub...
This manuscript is mainly focused on the influence of repulsion between free electrons on the optica...
Inspired by recent measurements on individual metallic nanospheres that cannot be explained with tra...
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...
International audienceRecent experiments have shown that spatial dispersion may have a conspicuous i...
Singular graphene metasurfaces, conductivity gratings realized by periodically suppressing the local...
Singular graphene metasurfaces, conductivity gratings realized by periodically suppressing the local...
The field of plasmonics investigates how electromagnetic fields can be confined into sub- wavelength...
The effect of nonlocality on the optical response of metals lies at the forefront of research in nan...
International audienceWe analyze the impact of nonlocality on the waveguide modes of metallo-dielect...
Surface plasmons dominate the optical response of metal surfaces, and their nature is controlled by ...
We provide theoretical and numerical tools to quantitatively study the impact of nonlocality arising...
The singular plasmonic metasurfaces differ from the conventional metasurface, as they are featured w...
International audienceRecent experiments have shown that spatial dispersion may have a conspicuous i...
Metals support surface plasmons at optical wavelengths and have the ability to localize light to sub...
This manuscript is mainly focused on the influence of repulsion between free electrons on the optica...
Inspired by recent measurements on individual metallic nanospheres that cannot be explained with tra...
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...
International audienceRecent experiments have shown that spatial dispersion may have a conspicuous i...