Unravelling the intertwined atomic and bulk nature of localised excitons by attosecond spectroscopy

The capability to follow electron motion in solids is necessary to explore the ultimate speed limits of optical charge manipulation and signal processing in optoelectronic devices. Here, the authors reveal the sub-femtosecond dynamics of core excitons in MgF2 and find the dual atomic-solid nature of...

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Autores principales: Matteo Lucchini, Shunsuke A. Sato, Giacinto D. Lucarelli, Bruno Moio, Giacomo Inzani, Rocío Borrego-Varillas, Fabio Frassetto, Luca Poletto, Hannes Hübener, Umberto De Giovannini, Angel Rubio, Mauro Nisoli
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/80b69ce6646040e39d55335e677639cc
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spelling oai:doaj.org-article:80b69ce6646040e39d55335e677639cc2021-12-02T12:11:39ZUnravelling the intertwined atomic and bulk nature of localised excitons by attosecond spectroscopy10.1038/s41467-021-21345-72041-1723https://doaj.org/article/80b69ce6646040e39d55335e677639cc2021-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-21345-7https://doaj.org/toc/2041-1723The capability to follow electron motion in solids is necessary to explore the ultimate speed limits of optical charge manipulation and signal processing in optoelectronic devices. Here, the authors reveal the sub-femtosecond dynamics of core excitons in MgF2 and find the dual atomic-solid nature of the exciton quasi-particle to deeply affect its ultrafast dynamics.Matteo LucchiniShunsuke A. SatoGiacinto D. LucarelliBruno MoioGiacomo InzaniRocío Borrego-VarillasFabio FrassettoLuca PolettoHannes HübenerUmberto De GiovanniniAngel RubioMauro NisoliNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-7 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Matteo Lucchini
Shunsuke A. Sato
Giacinto D. Lucarelli
Bruno Moio
Giacomo Inzani
Rocío Borrego-Varillas
Fabio Frassetto
Luca Poletto
Hannes Hübener
Umberto De Giovannini
Angel Rubio
Mauro Nisoli
Unravelling the intertwined atomic and bulk nature of localised excitons by attosecond spectroscopy
description The capability to follow electron motion in solids is necessary to explore the ultimate speed limits of optical charge manipulation and signal processing in optoelectronic devices. Here, the authors reveal the sub-femtosecond dynamics of core excitons in MgF2 and find the dual atomic-solid nature of the exciton quasi-particle to deeply affect its ultrafast dynamics.
format article
author Matteo Lucchini
Shunsuke A. Sato
Giacinto D. Lucarelli
Bruno Moio
Giacomo Inzani
Rocío Borrego-Varillas
Fabio Frassetto
Luca Poletto
Hannes Hübener
Umberto De Giovannini
Angel Rubio
Mauro Nisoli
author_facet Matteo Lucchini
Shunsuke A. Sato
Giacinto D. Lucarelli
Bruno Moio
Giacomo Inzani
Rocío Borrego-Varillas
Fabio Frassetto
Luca Poletto
Hannes Hübener
Umberto De Giovannini
Angel Rubio
Mauro Nisoli
author_sort Matteo Lucchini
title Unravelling the intertwined atomic and bulk nature of localised excitons by attosecond spectroscopy
title_short Unravelling the intertwined atomic and bulk nature of localised excitons by attosecond spectroscopy
title_full Unravelling the intertwined atomic and bulk nature of localised excitons by attosecond spectroscopy
title_fullStr Unravelling the intertwined atomic and bulk nature of localised excitons by attosecond spectroscopy
title_full_unstemmed Unravelling the intertwined atomic and bulk nature of localised excitons by attosecond spectroscopy
title_sort unravelling the intertwined atomic and bulk nature of localised excitons by attosecond spectroscopy
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/80b69ce6646040e39d55335e677639cc
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