Self-biased reconfigurable graphene stacks for terahertz plasmonics

10.1038/ncomms7334

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Main Authors: Gomez-Diaz, J.S, Moldovan, C, Capdevila, S, Romeu, J, Bernard, L.S, Magrez, A, Ionescu, A.M, Perruisseau-Carrier, J
Other Authors: CENTRE FOR ADVANCED 2D MATERIALS
Format: Article
Published: Nature Publishing Group 2020
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Online Access:https://scholarbank.nus.edu.sg/handle/10635/177763
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spelling sg-nus-scholar.10635-1777632020-10-20T13:50:03Z Self-biased reconfigurable graphene stacks for terahertz plasmonics Gomez-Diaz, J.S Moldovan, C Capdevila, S Romeu, J Bernard, L.S Magrez, A Ionescu, A.M Perruisseau-Carrier, J CENTRE FOR ADVANCED 2D MATERIALS graphene carbon electrical conductivity electrode electromagnetic field electron theoretical study Article chemical analysis chemical structure conceptual framework conductance electric conductivity electric potential electrical parameters electrode frequency modulation infrared radiation structure analysis terahertz imaging terahertz plasmonic terahertz radiation 10.1038/ncomms7334 Nature Communications 6 6334 2020-10-20T03:16:29Z 2020-10-20T03:16:29Z 2015 Article Gomez-Diaz, J.S, Moldovan, C, Capdevila, S, Romeu, J, Bernard, L.S, Magrez, A, Ionescu, A.M, Perruisseau-Carrier, J (2015). Self-biased reconfigurable graphene stacks for terahertz plasmonics. Nature Communications 6 : 6334. ScholarBank@NUS Repository. https://doi.org/10.1038/ncomms7334 20411723 https://scholarbank.nus.edu.sg/handle/10635/177763 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Nature Publishing Group Unpaywall 20201031
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
topic graphene
carbon
electrical conductivity
electrode
electromagnetic field
electron
theoretical study
Article
chemical analysis
chemical structure
conceptual framework
conductance
electric conductivity
electric potential
electrical parameters
electrode
frequency modulation
infrared radiation
structure analysis
terahertz imaging
terahertz plasmonic
terahertz radiation
spellingShingle graphene
carbon
electrical conductivity
electrode
electromagnetic field
electron
theoretical study
Article
chemical analysis
chemical structure
conceptual framework
conductance
electric conductivity
electric potential
electrical parameters
electrode
frequency modulation
infrared radiation
structure analysis
terahertz imaging
terahertz plasmonic
terahertz radiation
Gomez-Diaz, J.S
Moldovan, C
Capdevila, S
Romeu, J
Bernard, L.S
Magrez, A
Ionescu, A.M
Perruisseau-Carrier, J
Self-biased reconfigurable graphene stacks for terahertz plasmonics
description 10.1038/ncomms7334
author2 CENTRE FOR ADVANCED 2D MATERIALS
author_facet CENTRE FOR ADVANCED 2D MATERIALS
Gomez-Diaz, J.S
Moldovan, C
Capdevila, S
Romeu, J
Bernard, L.S
Magrez, A
Ionescu, A.M
Perruisseau-Carrier, J
format Article
author Gomez-Diaz, J.S
Moldovan, C
Capdevila, S
Romeu, J
Bernard, L.S
Magrez, A
Ionescu, A.M
Perruisseau-Carrier, J
author_sort Gomez-Diaz, J.S
title Self-biased reconfigurable graphene stacks for terahertz plasmonics
title_short Self-biased reconfigurable graphene stacks for terahertz plasmonics
title_full Self-biased reconfigurable graphene stacks for terahertz plasmonics
title_fullStr Self-biased reconfigurable graphene stacks for terahertz plasmonics
title_full_unstemmed Self-biased reconfigurable graphene stacks for terahertz plasmonics
title_sort self-biased reconfigurable graphene stacks for terahertz plasmonics
publisher Nature Publishing Group
publishDate 2020
url https://scholarbank.nus.edu.sg/handle/10635/177763
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