Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Toroidal Dipolar Excitation in Metamaterials Consisting of Metal nanodisks and a Dielectrc Spacer on Metal Substrate

View through CrossRef
AbstractWe have investigated numerically toroidal dipolar excitation at optical frequency in metamaterials whose unit cell consists of three identical Ag nanodisks and a SiO2spacer on Ag substrate. The near-field plasmon hybridization between individual Ag nanodisks and substrate forms three magnetic dipolar resonances, at normal incidence of plane electromagnetic waves. The strong coupling among three magnetic dipolar resonances leads to the toroidal dipolar excitation, when space-inversion symmetry is broke along the polarization direction of incident light. The influences of some geometrical parameters on the resonance frequency and the excitation strength of toroidal dipolar mode are studied in detail. The radiated power from toroidal dipole is also compared with that from conventional electric and magnetic multipoles.
Title: Toroidal Dipolar Excitation in Metamaterials Consisting of Metal nanodisks and a Dielectrc Spacer on Metal Substrate
Description:
AbstractWe have investigated numerically toroidal dipolar excitation at optical frequency in metamaterials whose unit cell consists of three identical Ag nanodisks and a SiO2spacer on Ag substrate.
The near-field plasmon hybridization between individual Ag nanodisks and substrate forms three magnetic dipolar resonances, at normal incidence of plane electromagnetic waves.
The strong coupling among three magnetic dipolar resonances leads to the toroidal dipolar excitation, when space-inversion symmetry is broke along the polarization direction of incident light.
The influences of some geometrical parameters on the resonance frequency and the excitation strength of toroidal dipolar mode are studied in detail.
The radiated power from toroidal dipole is also compared with that from conventional electric and magnetic multipoles.

Related Results

Ultracold dipolar gases in optical lattices
Ultracold dipolar gases in optical lattices
Esta tesis es un trabajo teórico, en el que estudiamos la física de los átomos dipolares bosónicos ultrafríos en retículos ópticos. Éstos gases consisten de átomos o moléculas bosó...
Effects of an external toroidal field on the rotating field driven current in a Rotamak for fusion plasma confinement
Effects of an external toroidal field on the rotating field driven current in a Rotamak for fusion plasma confinement
The mechanism which creates toroidal currents in Tokamaks to magnetically confine hot fusion plasmas is cyclic and subjects the components to large periodic stresses. An alternativ...
Comparative Analysis of Conventional and Toroidal Propeller through CFD Methods
Comparative Analysis of Conventional and Toroidal Propeller through CFD Methods
Toroidal propeller comprising circular blades is gaining significant attention due to higher efficiency; lower noise levels and other advantages compared to the current propeller m...
Information Metamaterials
Information Metamaterials
Metamaterials have attracted enormous interests from both physics and engineering communities in the past 20 years, owing to their powerful ability in manipulating electromagnetic ...
Plasmonic Toroidal Dipolar Response under Radially Polarized Excitation
Plasmonic Toroidal Dipolar Response under Radially Polarized Excitation
AbstractPlasmonic toroidal resonance has attracted growing interests because of its low loss electromagnetic properties and potential high sensitive nanophotonic applications. Howe...
Acoustic metamaterials : microperforated shell and Helmholtz resonator
Acoustic metamaterials : microperforated shell and Helmholtz resonator
Metamaterials have been extensively developed in many areas over the past two decades, a great deal of research has been conducted on acoustic metamaterials exhibiting unusual dyna...

Back to Top