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  4. Hybridized Exciton-Photon-Phonon States in a Transition Metal Dichalcogenide van der Waals Heterostructure Microcavity
 
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2022
Journal Article
Titel

Hybridized Exciton-Photon-Phonon States in a Transition Metal Dichalcogenide van der Waals Heterostructure Microcavity

Abstract
Excitons in atomically thin transition-metal dichalcogenides (TMDs) have been established as an attractive platform to explore polaritonic physics, owing to their enormous binding energies and giant oscillator strength. Basic spectral features of exciton polaritons in TMD microcavities, thus far, were conventionally explained via two-coupled-oscillator models. This ignores, however, the impact of phonons on the polariton energy structure. Here we establish and quantify the threefold coupling between excitons, cavity photons, and phonons. For this purpose, we employ energy-momentum-resolved photoluminescence and spatially resolved coherent two-dimensional spectroscopy to investigate the spectral properties of a high-quality-factor microcavity with an embedded WSe2 van der Waals heterostructure at room temperature. Our approach reveals a rich multibranch structure which thus far has not been captured in previous experiments. Simulation of the data reveals hybridized exciton-photon-phonon states, providing new physical insight into the exciton polariton system based on layered TMDs.
Author(s)
Li, D.
Julius-Maximilians-Universität Würzburg
Shan, H.
Universität Oldenburg
Rupprecht, C.
Julius-Maximilians-Universität Würzburg
Knopf, Heiko
Friedrich-Schiller-Universität Jena
Watanabe, K.
National Institute for Materials Science
Taniguchi, T.
National Institute for Materials Science
Qin, Y.
Arizona State University
Tongay, S.
Arizona State University
Nuß, M.
Julius-Maximilians-Universität Würzburg
Schröder, Sven
Fraunhofer-Institut für Angewandte Optik und Feinmechanik IOF
Eilenberger, Falk
Friedrich-Schiller-Universität Jena
Höfling, S.
Julius-Maximilians-Universität Würzburg
Schneider, C.
Universität Oldenburg
Brixner, T.
Julius-Maximilians-Universität Würzburg
Zeitschrift
Physical review letters
Thumbnail Image
DOI
10.1103/PhysRevLett.128.087401
Language
English
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Fraunhofer-Institut für Angewandte Optik und Feinmechanik IOF
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