The electromagnetic properties of plasmonic nano-Antennas and scatterers with the characteristic dimensions at deep-nanometer scale, governed by quantum mechanical effects, have been extensively studied by a hydrodynamic approach. Several hydrodynamic models, together with additional boundary conditions, have been proposed to deal with the collective motion of the free electron gas in metals. In this work, four hydrodynamic models, namely the hard-wall hydrodynamic model, the curl-free hydrodynamic model, the shear forces hydrodynamic model, and the quantum hydrodynamic model are employed. The study is performed for a deep-nanometer metal core-dielectric shell sphere, excited by a plane wave. It is demonstrated that the far field characteri...
© 2017 IOP Publishing Ltd. In this work, we present a rigorous approach for analyzing the optical re...
Within the framework of the Boundary Element Method (BEM), we develop a computational scheme to acco...
Plasmonic response of the metallic structure characterized by sub-nanometer dielectric gaps can be s...
Since deep nanoscale systems are increasingly studied, accurate macroscopic theories dealing with qu...
The interaction between light and plasmonic structures at the deep-nanometer scale, which is essenti...
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 cannot be explained with tra...
© 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...
Nonlocal and quantum effects play an important role in accurately modeling the optical response of n...
We predict that localized surface plasmons (LSP) in semiconductor particles exhibit spatial nonlocal...
The standard hydrodynamic Drude model with hard-wall boundary conditions can give accurate quantitat...
The field of plasmonics investigates how electromagnetic fields can be confined into sub- wavelength...
The recent ability of plasmonic nanostructures to probe subnanometer and even atomic scales demands ...
Using a fully quantum mechanical approach we study the optical response of a strongly coupled metall...
© 2017 IOP Publishing Ltd. In this work, we present a rigorous approach for analyzing the optical re...
Within the framework of the Boundary Element Method (BEM), we develop a computational scheme to acco...
Plasmonic response of the metallic structure characterized by sub-nanometer dielectric gaps can be s...
Since deep nanoscale systems are increasingly studied, accurate macroscopic theories dealing with qu...
The interaction between light and plasmonic structures at the deep-nanometer scale, which is essenti...
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 cannot be explained with tra...
© 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...
Nonlocal and quantum effects play an important role in accurately modeling the optical response of n...
We predict that localized surface plasmons (LSP) in semiconductor particles exhibit spatial nonlocal...
The standard hydrodynamic Drude model with hard-wall boundary conditions can give accurate quantitat...
The field of plasmonics investigates how electromagnetic fields can be confined into sub- wavelength...
The recent ability of plasmonic nanostructures to probe subnanometer and even atomic scales demands ...
Using a fully quantum mechanical approach we study the optical response of a strongly coupled metall...
© 2017 IOP Publishing Ltd. In this work, we present a rigorous approach for analyzing the optical re...
Within the framework of the Boundary Element Method (BEM), we develop a computational scheme to acco...
Plasmonic response of the metallic structure characterized by sub-nanometer dielectric gaps can be s...