Reshaping the phonon energy landscape of nanocrystals inside a terahertz plasmonic nanocavity

Here the authors show that the dipole-active phonon resonance of semiconducting nanocrystals can be hybridized by a strongly concentrated terahertz vacuum field of a plasmonic nanocavity, thus achieving strong plasmon–phonon coupling even in the absence of direct terahertz illumination.

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Autores principales: Xin Jin, Andrea Cerea, Gabriele C. Messina, Andrea Rovere, Riccardo Piccoli, Francesco De Donato, Francisco Palazon, Andrea Perucchi, Paola Di Pietro, Roberto Morandotti, Stefano Lupi, Francesco De Angelis, Mirko Prato, Andrea Toma, Luca Razzari
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/6cf8f0e62a5e48198a2e43335f394269
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spelling oai:doaj.org-article:6cf8f0e62a5e48198a2e43335f3942692021-12-02T17:32:33ZReshaping the phonon energy landscape of nanocrystals inside a terahertz plasmonic nanocavity10.1038/s41467-018-03120-32041-1723https://doaj.org/article/6cf8f0e62a5e48198a2e43335f3942692018-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-03120-3https://doaj.org/toc/2041-1723Here the authors show that the dipole-active phonon resonance of semiconducting nanocrystals can be hybridized by a strongly concentrated terahertz vacuum field of a plasmonic nanocavity, thus achieving strong plasmon–phonon coupling even in the absence of direct terahertz illumination.Xin JinAndrea CereaGabriele C. MessinaAndrea RovereRiccardo PiccoliFrancesco De DonatoFrancisco PalazonAndrea PerucchiPaola Di PietroRoberto MorandottiStefano LupiFrancesco De AngelisMirko PratoAndrea TomaLuca RazzariNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-6 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Xin Jin
Andrea Cerea
Gabriele C. Messina
Andrea Rovere
Riccardo Piccoli
Francesco De Donato
Francisco Palazon
Andrea Perucchi
Paola Di Pietro
Roberto Morandotti
Stefano Lupi
Francesco De Angelis
Mirko Prato
Andrea Toma
Luca Razzari
Reshaping the phonon energy landscape of nanocrystals inside a terahertz plasmonic nanocavity
description Here the authors show that the dipole-active phonon resonance of semiconducting nanocrystals can be hybridized by a strongly concentrated terahertz vacuum field of a plasmonic nanocavity, thus achieving strong plasmon–phonon coupling even in the absence of direct terahertz illumination.
format article
author Xin Jin
Andrea Cerea
Gabriele C. Messina
Andrea Rovere
Riccardo Piccoli
Francesco De Donato
Francisco Palazon
Andrea Perucchi
Paola Di Pietro
Roberto Morandotti
Stefano Lupi
Francesco De Angelis
Mirko Prato
Andrea Toma
Luca Razzari
author_facet Xin Jin
Andrea Cerea
Gabriele C. Messina
Andrea Rovere
Riccardo Piccoli
Francesco De Donato
Francisco Palazon
Andrea Perucchi
Paola Di Pietro
Roberto Morandotti
Stefano Lupi
Francesco De Angelis
Mirko Prato
Andrea Toma
Luca Razzari
author_sort Xin Jin
title Reshaping the phonon energy landscape of nanocrystals inside a terahertz plasmonic nanocavity
title_short Reshaping the phonon energy landscape of nanocrystals inside a terahertz plasmonic nanocavity
title_full Reshaping the phonon energy landscape of nanocrystals inside a terahertz plasmonic nanocavity
title_fullStr Reshaping the phonon energy landscape of nanocrystals inside a terahertz plasmonic nanocavity
title_full_unstemmed Reshaping the phonon energy landscape of nanocrystals inside a terahertz plasmonic nanocavity
title_sort reshaping the phonon energy landscape of nanocrystals inside a terahertz plasmonic nanocavity
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/6cf8f0e62a5e48198a2e43335f394269
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