Resonance Raman signature of intertube excitons in compositionally-defined carbon nanotube bundles

Bundles of single-wall carbon nanotubes with enriched chirality can be used as model systems for exploring exciton physics in low-dimensional nanostructures. Here, the authors use resonant Raman spectroscopy to probe intertube interactions in bundles of (6,5)-enriched carbon nanotubes, and observe a...

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Autores principales: Jeffrey R. Simpson, Oleksiy Roslyak, Juan G. Duque, Erik H. Hároz, Jared J. Crochet, Hagen Telg, Andrei Piryatinski, Angela R. Hight Walker, Stephen K. Doorn
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/652c6575018e4235980bfc9e1f87b3f7
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spelling oai:doaj.org-article:652c6575018e4235980bfc9e1f87b3f72021-12-02T14:41:17ZResonance Raman signature of intertube excitons in compositionally-defined carbon nanotube bundles10.1038/s41467-018-03057-72041-1723https://doaj.org/article/652c6575018e4235980bfc9e1f87b3f72018-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-03057-7https://doaj.org/toc/2041-1723Bundles of single-wall carbon nanotubes with enriched chirality can be used as model systems for exploring exciton physics in low-dimensional nanostructures. Here, the authors use resonant Raman spectroscopy to probe intertube interactions in bundles of (6,5)-enriched carbon nanotubes, and observe a Fano resonance arising from coupling between intertube and intratube excitons.Jeffrey R. SimpsonOleksiy RoslyakJuan G. DuqueErik H. HározJared J. CrochetHagen TelgAndrei PiryatinskiAngela R. Hight WalkerStephen K. DoornNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-7 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Jeffrey R. Simpson
Oleksiy Roslyak
Juan G. Duque
Erik H. Hároz
Jared J. Crochet
Hagen Telg
Andrei Piryatinski
Angela R. Hight Walker
Stephen K. Doorn
Resonance Raman signature of intertube excitons in compositionally-defined carbon nanotube bundles
description Bundles of single-wall carbon nanotubes with enriched chirality can be used as model systems for exploring exciton physics in low-dimensional nanostructures. Here, the authors use resonant Raman spectroscopy to probe intertube interactions in bundles of (6,5)-enriched carbon nanotubes, and observe a Fano resonance arising from coupling between intertube and intratube excitons.
format article
author Jeffrey R. Simpson
Oleksiy Roslyak
Juan G. Duque
Erik H. Hároz
Jared J. Crochet
Hagen Telg
Andrei Piryatinski
Angela R. Hight Walker
Stephen K. Doorn
author_facet Jeffrey R. Simpson
Oleksiy Roslyak
Juan G. Duque
Erik H. Hároz
Jared J. Crochet
Hagen Telg
Andrei Piryatinski
Angela R. Hight Walker
Stephen K. Doorn
author_sort Jeffrey R. Simpson
title Resonance Raman signature of intertube excitons in compositionally-defined carbon nanotube bundles
title_short Resonance Raman signature of intertube excitons in compositionally-defined carbon nanotube bundles
title_full Resonance Raman signature of intertube excitons in compositionally-defined carbon nanotube bundles
title_fullStr Resonance Raman signature of intertube excitons in compositionally-defined carbon nanotube bundles
title_full_unstemmed Resonance Raman signature of intertube excitons in compositionally-defined carbon nanotube bundles
title_sort resonance raman signature of intertube excitons in compositionally-defined carbon nanotube bundles
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/652c6575018e4235980bfc9e1f87b3f7
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