© 1963-2012 IEEE. Modeling the interaction between light and a plasmonic nanoantenna, whose critical dimension is of a few nanometers, is complex owing to the 'hydrodynamic' motion of free electrons in a metal. Such a hydrodynamic effect inevitably leads to a nonlocal material response, which enables the propagation of longitudinal electromagnetic waves in the material. In this paper, within the framework of a boundary integral equation and a method of moments algorithm, a computational scheme is developed for predicting the interaction of light with 3-D nonlocal hydrodynamic metallic nanoparticles of arbitrary shape. The numerical implementation is first demonstrated for the test example of a canonical spherical structure. The calculated r...
In order to describe light-matter interaction at deep-nanometer scale, which is governed by nonclass...
Inspired by recent measurements on individual metallic nanospheres that can not be explained with tr...
ABSTRACT: Semiclassical nonlocal optics based on the hydrodynamic description of conduction electron...
© 1963-2012 IEEE. Modeling the interaction between light and a plasmonic nanoantenna, whose critical...
Modeling the interaction between light and a plasmonic nanoantenna, whose critical dimension is of a...
Within the framework of the Boundary Element Method (BEM), we develop a computational scheme to acco...
The electromagnetic properties of plasmonic nano-Antennas and scatterers with the characteristic dim...
The interaction of light with metallic nanostructures produces a collective excitation of electrons ...
Since deep nanoscale systems are increasingly studied, accurate macroscopic theories dealing with qu...
The field of plasmonics investigates how electromagnetic fields can be confined into sub- wavelength...
© 2017 IOP Publishing Ltd. In this work, we present a rigorous approach for analyzing the optical re...
The interaction between light and plasmonic structures at the deep-nanometer scale, which is essenti...
International audienceWe present recent advances in the development of a Finite Element Time Domain ...
This chapter focuses on understanding the electromagnetic response of nanoscopic metallic antennas t...
International audienceWe present recent advances in the development of a Finite Element Time Domain ...
In order to describe light-matter interaction at deep-nanometer scale, which is governed by nonclass...
Inspired by recent measurements on individual metallic nanospheres that can not be explained with tr...
ABSTRACT: Semiclassical nonlocal optics based on the hydrodynamic description of conduction electron...
© 1963-2012 IEEE. Modeling the interaction between light and a plasmonic nanoantenna, whose critical...
Modeling the interaction between light and a plasmonic nanoantenna, whose critical dimension is of a...
Within the framework of the Boundary Element Method (BEM), we develop a computational scheme to acco...
The electromagnetic properties of plasmonic nano-Antennas and scatterers with the characteristic dim...
The interaction of light with metallic nanostructures produces a collective excitation of electrons ...
Since deep nanoscale systems are increasingly studied, accurate macroscopic theories dealing with qu...
The field of plasmonics investigates how electromagnetic fields can be confined into sub- wavelength...
© 2017 IOP Publishing Ltd. In this work, we present a rigorous approach for analyzing the optical re...
The interaction between light and plasmonic structures at the deep-nanometer scale, which is essenti...
International audienceWe present recent advances in the development of a Finite Element Time Domain ...
This chapter focuses on understanding the electromagnetic response of nanoscopic metallic antennas t...
International audienceWe present recent advances in the development of a Finite Element Time Domain ...
In order to describe light-matter interaction at deep-nanometer scale, which is governed by nonclass...
Inspired by recent measurements on individual metallic nanospheres that can not be explained with tr...
ABSTRACT: Semiclassical nonlocal optics based on the hydrodynamic description of conduction electron...