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  5. Optical slot antennas for enhancement of WSe<inf>2</inf> spontaneous emission rate

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Article
en
2015

Optical slot antennas for enhancement of WSe<inf>2</inf> spontaneous emission rate

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en
2015
Vol 69
Vol. 69
DOI: 10.1109/e3s.2015.7336812

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Eli Yablonovitch
Eli Yablonovitch

University of California, Berkeley

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Kevin Messer
Michael S. Eggleston
Sujay B. Desai
+8 more

Abstract

The spontaneous emission rate of light emitters has been shown to have strong dependence on their local electromagnetic environment 1 . Optical antennas exploit this effect and can be used to greatly increase the spontaneous emission rate of a coupled light emitter. There have been several demonstrations of this effect with promising results using dye molecules and Er 3+ ions 2,3 . It is predicted that spontaneous emission rate enhancements greater than 1000x can be achieved with optical antennas while maintaining greater than 50% optical efficiency 4 . Demonstration of large spontaneous emission enhancement of semiconductor light emitters could lead to low power, high efficiency, fast light sources useful for short-range optical communications. Transition metal dichalcogenides, such as WSe 2 , are promising candidates for the light emitter of such a nanoLED device because they are semiconductors that maintain good quantum efficiency even with a nanoscale dimension. In this work we demonstrate an optical slot antenna coupled to a monolayer of WSe 2 . Photoluminescence measurements show an increase of total light emission >700x when compared to WSe 2 that is not coupled to an antenna. We estimate a spontaneous emission rate enhancement of 318x is responsible for this huge increase in light emission.

How to cite this publication

Kevin Messer, Michael S. Eggleston, Sujay B. Desai, Seth A. Fortuna, Surabhi Madhavapathy, Peida Zhao, Jun Xiao, Xiang Zhang, Ali Javey, Ming C. Wu, Eli Yablonovitch (2015). Optical slot antennas for enhancement of WSe<inf>2</inf> spontaneous emission rate. , 69, DOI: https://doi.org/10.1109/e3s.2015.7336812.

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Publication Details

Type

Article

Year

2015

Authors

11

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1109/e3s.2015.7336812

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