Valley coherent exciton-polaritons in a monolayer semiconductor

The short exciton life time in atomically thin transition metal dichalcogenides poses limitations to efficient control of the valley pseudospin and coherence. Here, the authors manipulate the exciton coherence in a WSe2 monolayer embedded in an optical microcavity in the strong light-matter coupling...

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Main Authors: S. Dufferwiel, T. P. Lyons, D. D. Solnyshkov, A. A. P. Trichet, A. Catanzaro, F. Withers, G. Malpuech, J. M. Smith, K. S. Novoselov, M. S. Skolnick, D. N. Krizhanovskii, A. I. Tartakovskii
Format: Article
Language:English
Published: Nature Portfolio 2018-11-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-018-07249-z
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author S. Dufferwiel
T. P. Lyons
D. D. Solnyshkov
A. A. P. Trichet
A. Catanzaro
F. Withers
G. Malpuech
J. M. Smith
K. S. Novoselov
M. S. Skolnick
D. N. Krizhanovskii
A. I. Tartakovskii
author_facet S. Dufferwiel
T. P. Lyons
D. D. Solnyshkov
A. A. P. Trichet
A. Catanzaro
F. Withers
G. Malpuech
J. M. Smith
K. S. Novoselov
M. S. Skolnick
D. N. Krizhanovskii
A. I. Tartakovskii
author_sort S. Dufferwiel
collection DOAJ
description The short exciton life time in atomically thin transition metal dichalcogenides poses limitations to efficient control of the valley pseudospin and coherence. Here, the authors manipulate the exciton coherence in a WSe2 monolayer embedded in an optical microcavity in the strong light-matter coupling regime.
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spelling doaj.art-28f008817fb041e88a4422277ad5f2532022-12-21T20:28:50ZengNature PortfolioNature Communications2041-17232018-11-01911710.1038/s41467-018-07249-zValley coherent exciton-polaritons in a monolayer semiconductorS. Dufferwiel0T. P. Lyons1D. D. Solnyshkov2A. A. P. Trichet3A. Catanzaro4F. Withers5G. Malpuech6J. M. Smith7K. S. Novoselov8M. S. Skolnick9D. N. Krizhanovskii10A. I. Tartakovskii11Department of Physics and Astronomy, University of SheffieldDepartment of Physics and Astronomy, University of SheffieldInstitut Pascal, PHOTON-N2, Université Clermont Auvergne, CNRS, SIGMA ClermontDepartment of Materials, University of OxfordDepartment of Physics and Astronomy, University of SheffieldCentre for Graphene Science, CEMPS, University of ExeterInstitut Pascal, PHOTON-N2, Université Clermont Auvergne, CNRS, SIGMA ClermontDepartment of Materials, University of OxfordSchool of Physics and Astronomy, University of ManchesterDepartment of Physics and Astronomy, University of SheffieldDepartment of Physics and Astronomy, University of SheffieldDepartment of Physics and Astronomy, University of SheffieldThe short exciton life time in atomically thin transition metal dichalcogenides poses limitations to efficient control of the valley pseudospin and coherence. Here, the authors manipulate the exciton coherence in a WSe2 monolayer embedded in an optical microcavity in the strong light-matter coupling regime.https://doi.org/10.1038/s41467-018-07249-z
spellingShingle S. Dufferwiel
T. P. Lyons
D. D. Solnyshkov
A. A. P. Trichet
A. Catanzaro
F. Withers
G. Malpuech
J. M. Smith
K. S. Novoselov
M. S. Skolnick
D. N. Krizhanovskii
A. I. Tartakovskii
Valley coherent exciton-polaritons in a monolayer semiconductor
Nature Communications
title Valley coherent exciton-polaritons in a monolayer semiconductor
title_full Valley coherent exciton-polaritons in a monolayer semiconductor
title_fullStr Valley coherent exciton-polaritons in a monolayer semiconductor
title_full_unstemmed Valley coherent exciton-polaritons in a monolayer semiconductor
title_short Valley coherent exciton-polaritons in a monolayer semiconductor
title_sort valley coherent exciton polaritons in a monolayer semiconductor
url https://doi.org/10.1038/s41467-018-07249-z
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