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Multipolar nonlinear nanophotonics

Authors :
Yuri S. Kivshar
Daria A. Smirnova
Source :
Optica. 3:1241
Publication Year :
2016
Publisher :
The Optical Society, 2016.

Abstract

Nonlinear nanophotonics is a rapidly developing field with many useful applications for a design of nonlinear nanoantennas, light sources, nanolasers, sensors, and ultrafast miniature metadevices. A tight confinement of the local electromagnetic fields in resonant photonic nanostructures can boost nonlinear optical effects, thus offering versatile opportunities for subwavelength control of light. To achieve the desired functionalities, it is essential to gain flexible control over the near- and far-field properties of nanostructures. Thus, both modal and multipolar analyses are widely exploited for engineering nonlinear scattering from resonant nanoscale elements, in particular for enhancing the near-field interaction, tailoring the far-field multipolar interference, and optimization of the radiation directionality. Here, we review the recent advances in this recently emerged research field ranging from metallic structures exhibiting localized plasmonic resonances to hybrid metal-dielectric and all-dielectric nanostructures driven by Mie-type multipolar resonances and optically-induced magnetic response.<br />Comment: 17 pages, 6 figures

Details

ISSN :
23342536
Volume :
3
Database :
OpenAIRE
Journal :
Optica
Accession number :
edsair.doi.dedup.....4fc2a11b157947ad0fedc29a8f91f604
Full Text :
https://doi.org/10.1364/optica.3.001241