We apply the boundary element method to the analysis of the plasmon response of systems that consist of coupled metallic nanoscatterers. For systems made of two or more objects, the response depends strongly on the individual particle behavior as well as on the separation distance and on the configuration of the particles relative to the illumination direction. By analyzing the behavior of these systems, we determine the smallest interaction distance at which the particles can be considered decoupled. We discriminate the two cases of particle systems consisting of scatterers with the same and different resonance wavelengths. © 2004 Optical Society of America
7 pags., 4 figs.Nanostructures made of metallic materials support collective oscillations of their c...
Based on a popular article in Laser and Photonics Reviews, this book provides an explanation and ove...
he interaction of light with metal nanoparticles leads to the appear-ance of localized surface plasm...
The unifying theme of this thesis is that of light scattering by particles, using computational appr...
Plasmonics is the branch of photonics that is concerned with the interactions which take place betwe...
Resumen del póster presentado a la NanoSpain Conference, celebrada en Logroño (España) del 15 al 18 ...
We study the optical response of strongly coupled metal nanoparticle chains using rigorous multiple ...
The efficiency of light scattering on metal nanoparticles with an excitation of plasmon resonance el...
Recently, we showed that the plasmon resonance coupling between two interacting metal nanoparticles ...
This book introduces the fascinating world of plasmonics and physics at the nanoscale, with a focus ...
The fully atomistic model, ωFQ, based on textbook concepts (Drude theory, electrostatics, quantum tu...
In this work, We study of the optical properties of nanoparticles using Mie theory. This famous theo...
Thesis (Ph.D.)--University of Washington, 2017-03Coherent and collective charge oscillations in meta...
In this thesis numerical methods are used to understand the individual and collective optical respon...
Size effect for plasmon resonance in metallic nanoparticles has been studied by finite element metho...
7 pags., 4 figs.Nanostructures made of metallic materials support collective oscillations of their c...
Based on a popular article in Laser and Photonics Reviews, this book provides an explanation and ove...
he interaction of light with metal nanoparticles leads to the appear-ance of localized surface plasm...
The unifying theme of this thesis is that of light scattering by particles, using computational appr...
Plasmonics is the branch of photonics that is concerned with the interactions which take place betwe...
Resumen del póster presentado a la NanoSpain Conference, celebrada en Logroño (España) del 15 al 18 ...
We study the optical response of strongly coupled metal nanoparticle chains using rigorous multiple ...
The efficiency of light scattering on metal nanoparticles with an excitation of plasmon resonance el...
Recently, we showed that the plasmon resonance coupling between two interacting metal nanoparticles ...
This book introduces the fascinating world of plasmonics and physics at the nanoscale, with a focus ...
The fully atomistic model, ωFQ, based on textbook concepts (Drude theory, electrostatics, quantum tu...
In this work, We study of the optical properties of nanoparticles using Mie theory. This famous theo...
Thesis (Ph.D.)--University of Washington, 2017-03Coherent and collective charge oscillations in meta...
In this thesis numerical methods are used to understand the individual and collective optical respon...
Size effect for plasmon resonance in metallic nanoparticles has been studied by finite element metho...
7 pags., 4 figs.Nanostructures made of metallic materials support collective oscillations of their c...
Based on a popular article in Laser and Photonics Reviews, this book provides an explanation and ove...
he interaction of light with metal nanoparticles leads to the appear-ance of localized surface plasm...