-
- Aleksandr Vaskin
- Institute of Applied Physics Abbe Center of Photonics Friedrich Schiller University Jena Albert‐Einstein‐Strasse 15 07745 Jena Germany
-
- Radoslaw Kolkowski
- Center for Nanophotonics, AMOLF, Dutch Research Council Science Park 104 NL‐1098XG Amsterdam The Netherlands
-
- A. Femius Koenderink
- Center for Nanophotonics, AMOLF, Dutch Research Council Science Park 104 NL‐1098XG Amsterdam The Netherlands
-
- Isabelle Staude
- Institute of Applied Physics Abbe Center of Photonics Friedrich Schiller University Jena Albert‐Einstein‐Strasse 15 07745 Jena Germany
書誌事項
- 公開日
- 2018-06
- 権利情報
-
- http://creativecommons.org/licenses/by/4.0/
- http://doi.wiley.com/10.1002/tdm_license_1.1
- DOI
-
- 10.1515/nanoph-2019-0110
- 公開者
- Wiley
この論文をさがす
説明
<jats:title>Abstract</jats:title> <jats:p>Photonic metasurfaces, that is, two‐dimensional arrangements of designed plasmonic or dielectric resonant scatterers, have been established as a successful concept for controlling light fields at the nanoscale. While the majority of research so far has concentrated on passive metasurfaces, the direct integration of nanoscale emitters into the metasurface architecture offers unique opportunities ranging from fundamental investigations of complex light‐matter interactions to the creation of flat sources of tailored light fields. While the integration of emitters in metasurfaces as well as many fundamental effects occurring in such structures were initially studied in the realm of nanoplasmonics, the field has recently gained significant momentum following the development of Mie‐resonant dielectric metasurfaces. Because of their low absorption losses, additional possibilities for emitter integration, and compatibility with semiconductor‐based light‐emitting devices, all‐dielectric systems are promising for highly efficient metasurface light sources. Furthermore, a flurry of new emission phenomena are expected based on their multipolar resonant response. This review reports on the state of the art of light‐emitting metasurfaces, covering both plasmonic and all‐dielectric systems.</jats:p>
収録刊行物
-
- Nanophotonics
-
Nanophotonics 8 (7), 1151-1198, 2018-06
Wiley

