Terahertz saturable absorbers from liquid phase exfoliation of graphite

Graphene shows promise for saturable absorption, a key property for ultrafast lasing, yet graphene saturable absorbers operating in the terahertz region suffer from low absorption modulation. Here, the authors report terahertz saturable absorbers based on inkjet printed graphene with 80% transparenc...

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Autores principales: Vezio Bianchi, Tian Carey, Leonardo Viti, Lianhe Li, Edmund H. Linfield, A. Giles Davies, Alessandro Tredicucci, Duhee Yoon, Panagiotis G. Karagiannidis, Lucia Lombardi, Flavia Tomarchio, Andrea C. Ferrari, Felice Torrisi, Miriam S. Vitiello
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/ab680615aaeb482a8f9fe92220e1a060
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spelling oai:doaj.org-article:ab680615aaeb482a8f9fe92220e1a0602021-12-02T14:42:43ZTerahertz saturable absorbers from liquid phase exfoliation of graphite10.1038/ncomms157632041-1723https://doaj.org/article/ab680615aaeb482a8f9fe92220e1a0602017-06-01T00:00:00Zhttps://doi.org/10.1038/ncomms15763https://doaj.org/toc/2041-1723Graphene shows promise for saturable absorption, a key property for ultrafast lasing, yet graphene saturable absorbers operating in the terahertz region suffer from low absorption modulation. Here, the authors report terahertz saturable absorbers based on inkjet printed graphene with 80% transparency modulation.Vezio BianchiTian CareyLeonardo VitiLianhe LiEdmund H. LinfieldA. Giles DaviesAlessandro TredicucciDuhee YoonPanagiotis G. KaragiannidisLucia LombardiFlavia TomarchioAndrea C. FerrariFelice TorrisiMiriam S. VitielloNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-9 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Vezio Bianchi
Tian Carey
Leonardo Viti
Lianhe Li
Edmund H. Linfield
A. Giles Davies
Alessandro Tredicucci
Duhee Yoon
Panagiotis G. Karagiannidis
Lucia Lombardi
Flavia Tomarchio
Andrea C. Ferrari
Felice Torrisi
Miriam S. Vitiello
Terahertz saturable absorbers from liquid phase exfoliation of graphite
description Graphene shows promise for saturable absorption, a key property for ultrafast lasing, yet graphene saturable absorbers operating in the terahertz region suffer from low absorption modulation. Here, the authors report terahertz saturable absorbers based on inkjet printed graphene with 80% transparency modulation.
format article
author Vezio Bianchi
Tian Carey
Leonardo Viti
Lianhe Li
Edmund H. Linfield
A. Giles Davies
Alessandro Tredicucci
Duhee Yoon
Panagiotis G. Karagiannidis
Lucia Lombardi
Flavia Tomarchio
Andrea C. Ferrari
Felice Torrisi
Miriam S. Vitiello
author_facet Vezio Bianchi
Tian Carey
Leonardo Viti
Lianhe Li
Edmund H. Linfield
A. Giles Davies
Alessandro Tredicucci
Duhee Yoon
Panagiotis G. Karagiannidis
Lucia Lombardi
Flavia Tomarchio
Andrea C. Ferrari
Felice Torrisi
Miriam S. Vitiello
author_sort Vezio Bianchi
title Terahertz saturable absorbers from liquid phase exfoliation of graphite
title_short Terahertz saturable absorbers from liquid phase exfoliation of graphite
title_full Terahertz saturable absorbers from liquid phase exfoliation of graphite
title_fullStr Terahertz saturable absorbers from liquid phase exfoliation of graphite
title_full_unstemmed Terahertz saturable absorbers from liquid phase exfoliation of graphite
title_sort terahertz saturable absorbers from liquid phase exfoliation of graphite
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/ab680615aaeb482a8f9fe92220e1a060
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