arrow
Return

Tunneling-induced broadband and tunable optical emission from plasmonic nanorod metamaterials

delete2020-01-23
delete18
delete
OA
AI
A
Alexey V. Krasavin
王攀 cover
王攀 (Pan Wang)
M
Mazhar E. Nasir
Y
Yunlu Jiang
A
Anatoly V. Zayats *
DOI:10.1515/nanoph-2019-0411delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
We demonstrate a metamaterial platform for electrically driven broadband light emission induced by electron tunneling. Both the Fabry-Perot and waveguided modes of the metamaterial slab as well the plasmonic mode of the tunneling gap are identified as contributing to shaping the emission spectrum. This opens up an opportunity to design the spectrum and polarization of the emitted light by tuning the metamaterial modes via the geometric parameters of the nanostructure throughout the visible and near-infrared spectral ranges. The efficient coupling of the tunneling-induced emission to the waveguided modes is beneficial for the development of integrated incoherent light sources, while the outcoupled emission provides a source of free-space radiation. The demonstrated incoherent nanoscale light sources may find applications in the development of integrated opto-electronic circuits, optical sensing platforms, imaging, and metrology.
Keywords:
plasmonics
metamaterials
electron tunneling
nanoscale light sources

Journal

Nanophotonics cover
Nanophotonics
IF:
6.6
Papers:
2.9K
Citations:
1.6W

Organization

U
university of london
Scholars:
21.3W
Papers: 19.6W
Citations: 305