Room-temperature Tamm-plasmon exciton-polaritons with a WSe2 monolayer

Thanks to their strong light-matter interaction, atomically thin transition metal dichalcogenides are ideal active materials for cavity quantum electrodynamics. Here, the authors embed a WSe2monolayer within a Tamm-plasmon-polariton cavity, and observe exciton-polariton formation at room temperature...

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Autores principales: Nils Lundt, Sebastian Klembt, Evgeniia Cherotchenko, Simon Betzold, Oliver Iff, Anton V. Nalitov, Martin Klaas, Christof P. Dietrich, Alexey V. Kavokin, Sven Höfling, Christian Schneider
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Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/e35759346f94436480878884ca4287ea
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spelling oai:doaj.org-article:e35759346f94436480878884ca4287ea2021-12-02T14:38:35ZRoom-temperature Tamm-plasmon exciton-polaritons with a WSe2 monolayer10.1038/ncomms133282041-1723https://doaj.org/article/e35759346f94436480878884ca4287ea2016-10-01T00:00:00Zhttps://doi.org/10.1038/ncomms13328https://doaj.org/toc/2041-1723Thanks to their strong light-matter interaction, atomically thin transition metal dichalcogenides are ideal active materials for cavity quantum electrodynamics. Here, the authors embed a WSe2monolayer within a Tamm-plasmon-polariton cavity, and observe exciton-polariton formation at room temperature.Nils LundtSebastian KlembtEvgeniia CherotchenkoSimon BetzoldOliver IffAnton V. NalitovMartin KlaasChristof P. DietrichAlexey V. KavokinSven HöflingChristian SchneiderNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-6 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Nils Lundt
Sebastian Klembt
Evgeniia Cherotchenko
Simon Betzold
Oliver Iff
Anton V. Nalitov
Martin Klaas
Christof P. Dietrich
Alexey V. Kavokin
Sven Höfling
Christian Schneider
Room-temperature Tamm-plasmon exciton-polaritons with a WSe2 monolayer
description Thanks to their strong light-matter interaction, atomically thin transition metal dichalcogenides are ideal active materials for cavity quantum electrodynamics. Here, the authors embed a WSe2monolayer within a Tamm-plasmon-polariton cavity, and observe exciton-polariton formation at room temperature.
format article
author Nils Lundt
Sebastian Klembt
Evgeniia Cherotchenko
Simon Betzold
Oliver Iff
Anton V. Nalitov
Martin Klaas
Christof P. Dietrich
Alexey V. Kavokin
Sven Höfling
Christian Schneider
author_facet Nils Lundt
Sebastian Klembt
Evgeniia Cherotchenko
Simon Betzold
Oliver Iff
Anton V. Nalitov
Martin Klaas
Christof P. Dietrich
Alexey V. Kavokin
Sven Höfling
Christian Schneider
author_sort Nils Lundt
title Room-temperature Tamm-plasmon exciton-polaritons with a WSe2 monolayer
title_short Room-temperature Tamm-plasmon exciton-polaritons with a WSe2 monolayer
title_full Room-temperature Tamm-plasmon exciton-polaritons with a WSe2 monolayer
title_fullStr Room-temperature Tamm-plasmon exciton-polaritons with a WSe2 monolayer
title_full_unstemmed Room-temperature Tamm-plasmon exciton-polaritons with a WSe2 monolayer
title_sort room-temperature tamm-plasmon exciton-polaritons with a wse2 monolayer
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/e35759346f94436480878884ca4287ea
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