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Polarization-controlled amplified spontaneous emission in 2D semiconductors with birefringent microcavity

Title
Polarization-controlled amplified spontaneous emission in 2D semiconductors with birefringent microcavity
Author(s)
Jung, Jin-WooChoi, Hyeon-SeoLee, TaejinLee, Young-JunHong, Sang-HyunKang, Jang-WonCho, Chang-Hee
DGIST Authors
Jung, Jin-WooChoi, Hyeon-SeoLee, TaejinLee, Young-JunHong, Sang-HyunKang, Jang-WonCho, Chang-Hee
Issued Date
2021-10
Type
Article
Keywords
VALLEY COHERENCEMONOLAYEROPTOELECTRONICSEXCITONS
ISSN
0003-6951
Abstract
We report on the polarization-controlled amplification of excitonic emission in the monolayer WS2 coupled with ZnO microcavity. From polarization-resolved micro-photoluminescence spectroscopy and numerical modeling, we found that the polarization of WS2 excitonic emission can be tailored by the whispering gallery modes of the birefringent ZnO microcavity. Furthermore, the light input-light output curves exhibit the clear threshold kink and the superlinear increase in the output intensity for both the TM and TE polarization modes, indicating the polarization-dependent amplification of excitonic emission. Our results suggest an approach to realize the polarization-controlled photonic devices based on 2D materials. © 2021 Author(s).
URI
http://hdl.handle.net/20.500.11750/15595
DOI
10.1063/5.0062124
Publisher
American Institute of Physics
Related Researcher
  • 조창희 Cho, Chang-Hee
  • Research Interests Semiconductor; Nanophotonics; Light-Matter Interaction
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Appears in Collections:
Department of Physics and Chemistry Future Semiconductor Nanophotonics Laboratory 1. Journal Articles

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