Strong-coupling of WSe2 in ultra-compact plasmonic nanocavities at room temperature

Two-dimensional materials offer the prospect of excitonic devices operating at room-temperature. Here, Kleemann et al. demonstrate that by tuning the number of WSe2 layers in a nanoparticle-on-mirror geometry, room-temperature plasmon strong-coupling can be achieved with large Rabi splittings.

Bibliographic Details
Main Authors: Marie-Elena Kleemann, Rohit Chikkaraddy, Evgeny M. Alexeev, Dean Kos, Cloudy Carnegie, Will Deacon, Alex Casalis de Pury, Christoph Große, Bart de Nijs, Jan Mertens, Alexander I. Tartakovskii, Jeremy J. Baumberg
Format: Article
Language:English
Published: Nature Portfolio 2017-11-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-017-01398-3
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author Marie-Elena Kleemann
Rohit Chikkaraddy
Evgeny M. Alexeev
Dean Kos
Cloudy Carnegie
Will Deacon
Alex Casalis de Pury
Christoph Große
Bart de Nijs
Jan Mertens
Alexander I. Tartakovskii
Jeremy J. Baumberg
author_facet Marie-Elena Kleemann
Rohit Chikkaraddy
Evgeny M. Alexeev
Dean Kos
Cloudy Carnegie
Will Deacon
Alex Casalis de Pury
Christoph Große
Bart de Nijs
Jan Mertens
Alexander I. Tartakovskii
Jeremy J. Baumberg
author_sort Marie-Elena Kleemann
collection DOAJ
description Two-dimensional materials offer the prospect of excitonic devices operating at room-temperature. Here, Kleemann et al. demonstrate that by tuning the number of WSe2 layers in a nanoparticle-on-mirror geometry, room-temperature plasmon strong-coupling can be achieved with large Rabi splittings.
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spelling doaj.art-7deee686aef04454a8f1456c02b2f3c42022-12-21T19:28:02ZengNature PortfolioNature Communications2041-17232017-11-01811710.1038/s41467-017-01398-3Strong-coupling of WSe2 in ultra-compact plasmonic nanocavities at room temperatureMarie-Elena Kleemann0Rohit Chikkaraddy1Evgeny M. Alexeev2Dean Kos3Cloudy Carnegie4Will Deacon5Alex Casalis de Pury6Christoph Große7Bart de Nijs8Jan Mertens9Alexander I. Tartakovskii10Jeremy J. Baumberg11NanoPhotonics Centre, Cavendish Laboratory, University of CambridgeNanoPhotonics Centre, Cavendish Laboratory, University of CambridgeDepartment of Physics and Astronomy, University of SheffieldNanoPhotonics Centre, Cavendish Laboratory, University of CambridgeNanoPhotonics Centre, Cavendish Laboratory, University of CambridgeNanoPhotonics Centre, Cavendish Laboratory, University of CambridgeNanoPhotonics Centre, Cavendish Laboratory, University of CambridgeNanoPhotonics Centre, Cavendish Laboratory, University of CambridgeNanoPhotonics Centre, Cavendish Laboratory, University of CambridgeNanoPhotonics Centre, Cavendish Laboratory, University of CambridgeDepartment of Physics and Astronomy, University of SheffieldNanoPhotonics Centre, Cavendish Laboratory, University of CambridgeTwo-dimensional materials offer the prospect of excitonic devices operating at room-temperature. Here, Kleemann et al. demonstrate that by tuning the number of WSe2 layers in a nanoparticle-on-mirror geometry, room-temperature plasmon strong-coupling can be achieved with large Rabi splittings.https://doi.org/10.1038/s41467-017-01398-3
spellingShingle Marie-Elena Kleemann
Rohit Chikkaraddy
Evgeny M. Alexeev
Dean Kos
Cloudy Carnegie
Will Deacon
Alex Casalis de Pury
Christoph Große
Bart de Nijs
Jan Mertens
Alexander I. Tartakovskii
Jeremy J. Baumberg
Strong-coupling of WSe2 in ultra-compact plasmonic nanocavities at room temperature
Nature Communications
title Strong-coupling of WSe2 in ultra-compact plasmonic nanocavities at room temperature
title_full Strong-coupling of WSe2 in ultra-compact plasmonic nanocavities at room temperature
title_fullStr Strong-coupling of WSe2 in ultra-compact plasmonic nanocavities at room temperature
title_full_unstemmed Strong-coupling of WSe2 in ultra-compact plasmonic nanocavities at room temperature
title_short Strong-coupling of WSe2 in ultra-compact plasmonic nanocavities at room temperature
title_sort strong coupling of wse2 in ultra compact plasmonic nanocavities at room temperature
url https://doi.org/10.1038/s41467-017-01398-3
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