Dynamical theory of artificial optical magnetism produced by rings of plasmonic nanoparticles

Loading...
Thumbnail Image

Embargo Date

Related Collections

Degree type

Discipline

Subject

absorption coefficients
magnetic permeability
magneto-optical effects
metamaterials
nanoparticles
optical materials
photonic band gap
plasmonics
refractive index

Funder

Grant number

License

Copyright date

Distributor

Related resources

Contributor

Abstract

We present a detailed analytical theory for the plasmonic nanoring configuration first proposed by Alù et al. [Opt. Express 14, 1557 (2006)], which is shown to provide negative magnetic permeability and negative index of refraction at infrared and optical frequencies. We show analytically how the nanoring configuration may provide superior performance when compared to some other solutions for optical negative-index materials, offering a more "pure" magnetic response at these high frequencies, which is necessary for lowering the effects of radiation losses and absorption. Sensitivity to losses and the bandwidth of operation of this magnetic inclusion are also investigated in detail and compared with other available setups.

Advisor

Date Range for Data Collection (Start Date)

Date Range for Data Collection (End Date)

Digital Object Identifier

Series name and number

Publication date

2008-08-01

Journal title

Volume number

Issue number

Publisher

Publisher DOI

Journal Issues

Comments

Copyright 2008 American Physical Society. Reprinted from Physical Review B, Volume 78, Article 085112, August 2008, 10 pages. Publisher URL: http://dx.doi.org/ 10.1103/PhysRevB.78.085112

Recommended citation

Collection