Plasmonics for extreme light concentration and manipulation

被引:48
|
作者
Schuller J.A. [1 ]
Barnard E.S. [1 ]
Cai W. [1 ]
Jun Y.C. [1 ]
White J.S. [1 ]
Brongersma M.L. [1 ]
机构
[1] Geballe Laboratory for Advanced Materials, Stanford
关键词
The authors of this article would like to acknowledge support from a US Department of Defense Multidisciplinary University Research Initiative sponsored by the Air Force Office of Scientific Research (F495500410437). The authors also thank the Centre on Nanostructuring for Efficient Energy Conversion; an Energy Frontier Research Center funded by the US Department of Energy; Office of Science; Office of Basic Energy Sciences under award number DESC0001060;
D O I
10.1038/nmat2630
中图分类号
学科分类号
摘要
The unprecedented ability of nanometallic (that is, plasmonic) structures to concentrate light into deep-subwavelength volumes has propelled their use in a vast array of nanophotonics technologies and research endeavours. Plasmonic light concentrators can elegantly interface diffraction-limited dielectric optical components with nanophotonic structures. Passive and active plasmonic devices provide new pathways to generate, guide, modulate and detect light with structures that are similar in size to state-of-the-art electronic devices. With the ability to produce highly confined optical fields, the conventional rules for light-matter interactions need to be re-examined, and researchers are venturing into new regimes of optical physics. In this review we will discuss the basic concepts behind plasmonics-enabled light concentration and manipulation, make an attempt to capture the wide range of activities and excitement in this area, and speculate on possible future directions.
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页码:193 / 204
页数:11
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