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DOI: 10.1021/acs.nanolett.6b04374
¤ OpenAccess: Green
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Sub-bandgap Voltage Electroluminescence and Magneto-oscillations in a WSe<sub>2</sub> Light-Emitting van der Waals Heterostructure

Johannes Binder,Freddie Withers,Maciej R. Molas,C. Faugeras,Karol Nogajewski,Kenji Watanabe,Takashi Taniguchi,Aleksey Kozikov,A. K. Geǐm,Kostya S. Novoselov,M. Potemski

Electroluminescence
Exciton
Condensed matter physics
2017
We report on experimental investigations of an electrically driven WSe2 based light-emitting van der Waals heterostructure. We observe a threshold voltage for electroluminescence significantly lower than the corresponding single particle band gap of monolayer WSe2. This observation can be interpreted by considering the Coulomb interaction and a tunneling process involving excitons, well beyond the picture of independent charge carriers. An applied magnetic field reveals pronounced magneto-oscillations in the electroluminescence of the free exciton emission intensity with a 1/B periodicity. This effect is ascribed to a modulation of the tunneling probability resulting from the Landau quantization in the graphene electrodes. A sharp feature in the differential conductance indicates that the Fermi level is pinned and allows for an estimation of the acceptor binding energy.
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    Sub-bandgap Voltage Electroluminescence and Magneto-oscillations in a WSe<sub>2</sub> Light-Emitting van der Waals Heterostructure” is a paper by Johannes Binder Freddie Withers Maciej R. Molas C. Faugeras Karol Nogajewski Kenji Watanabe Takashi Taniguchi Aleksey Kozikov A. K. Geǐm Kostya S. Novoselov M. Potemski published in 2017. It has an Open Access status of “green”. You can read and download a PDF Full Text of this paper here.