The standard hydrodynamic Drude model with hard-wall boundary conditions can give accurate quantitative predictions for the optical response of noble-metal nanoparticles. However, it is less accurate for other metallic nanosystems, where surface effects due to electron density spill-out in free space cannot be neglected. Here we address the fundamental question whether the description of surface effects in plasmonics necessarily requires a fully quantum-mechanical ab initio approach. We present a self-consistent hydrodynamic model (SC-HDM), where both the ground state and the excited state properties of an inhomogeneous electron gas can be determined. With this method we are able to explain the size-dependent surface resonance shifts of Na ...
The classical treatment of plasmonics is insufficient at the nanometer-scale due to quantum mechanic...
The electromagnetic properties of plasmonic nano-Antennas and scatterers with the characteristic dim...
We present a theoretical model for analyzing the size dependence of the surface plasmon resonance of...
Nonlocal and quantum effects play an important role in accurately modeling the optical response of n...
International audienceThe impact of quantum confinement on the width of the surface plasmon resonanc...
Optical properties of metal nanostructures are the basis of several scientific and technological app...
ABSTRACT: For metallic nanoparticles less than 10 nm in diameter, localized surface plasmon resonanc...
Metallic nanoparticles exhibit localized surface plasmonic resonance (LSPR) with peak energy depende...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).We present an ab initio stud...
According to the hydrodynamic Drude model, surface plasmon resonances of metallic nanostructures blu...
During the past decade, nanoplasmonics and nanophotonicshas emerged as a new branch of nanosciences ...
For metallic nanoparticles less than 10 nm in diameter, localized surface plasmon resonances (LSPRs)...
Plasmonic response of the metallic structure characterized by sub-nanometer dielectric gaps can be s...
© 2014 American Chemical Society. We use an extension of the hydrodynamic model to study nonlocal ef...
We use an extension of the hydrodynamic model to study nonlocal effects in the collective plasmon ex...
The classical treatment of plasmonics is insufficient at the nanometer-scale due to quantum mechanic...
The electromagnetic properties of plasmonic nano-Antennas and scatterers with the characteristic dim...
We present a theoretical model for analyzing the size dependence of the surface plasmon resonance of...
Nonlocal and quantum effects play an important role in accurately modeling the optical response of n...
International audienceThe impact of quantum confinement on the width of the surface plasmon resonanc...
Optical properties of metal nanostructures are the basis of several scientific and technological app...
ABSTRACT: For metallic nanoparticles less than 10 nm in diameter, localized surface plasmon resonanc...
Metallic nanoparticles exhibit localized surface plasmonic resonance (LSPR) with peak energy depende...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).We present an ab initio stud...
According to the hydrodynamic Drude model, surface plasmon resonances of metallic nanostructures blu...
During the past decade, nanoplasmonics and nanophotonicshas emerged as a new branch of nanosciences ...
For metallic nanoparticles less than 10 nm in diameter, localized surface plasmon resonances (LSPRs)...
Plasmonic response of the metallic structure characterized by sub-nanometer dielectric gaps can be s...
© 2014 American Chemical Society. We use an extension of the hydrodynamic model to study nonlocal ef...
We use an extension of the hydrodynamic model to study nonlocal effects in the collective plasmon ex...
The classical treatment of plasmonics is insufficient at the nanometer-scale due to quantum mechanic...
The electromagnetic properties of plasmonic nano-Antennas and scatterers with the characteristic dim...
We present a theoretical model for analyzing the size dependence of the surface plasmon resonance of...