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Tunable plasmons in regular planar arrays of graphene nanoribbons with armchair and zigzag-shaped edges

Author
Vacacela Gómez, Cristian; Pisarra, Micheleuntranslated; Gravina, Mario; Sindona, Antonello
Entity
UAM. Departamento de Química
Publisher
Beilstein-Institut Zur Forderung der Chemischen Wissenschaften
Date
2017-01-17
Citation
10.3762/bjnano.8.18
Beilstein Journal of Nanotechnology 8.1 (2017): 172-182
 
 
 
ISSN
2190-4286
DOI
10.3762/bjnano.8.18
Funded by
C.V.G. acknowledges the financial support of the “Secretaria Nacional de Educación Superior, Ciencia, Tecnología e Innovación” (SENESCYT-ECUADOR)
Editor's Version
http://dx.doi.org/10.3762/bjnano.8.18
Subjects
Graphene nanoribbons; Plasmonics; Time-dependent density functional theory; Química
URI
http://hdl.handle.net/10486/678934
Rights
© 2017 Vacacela Gomez et al.; licensee Beilstein-Institut

Licencia Creative Commons
Esta obra está bajo una Licencia Creative Commons Atribución 4.0 Internacional.

Abstract

Recent experimental evidence for and the theoretical confirmation of tunable edge plasmons and surface plasmons in graphene nanoribbons have opened up new opportunities to scrutinize the main geometric and conformation factors, which can be used to modulate these collective modes in the infrared-to-terahertz frequency band. Here, we show how the extrinsic plasmon structure of regular planar arrays of graphene nanoribbons, with perfectly symmetric edges, is influenced by the width, chirality and unit-cell length of each ribbon, as well as the in-plane vacuum distance between two contiguous ribbons. Our predictions, based on time-dependent density functional theory, in the random phase approximation, are expected to be of immediate help for measurements of plasmonic features in nanoscale architectures of nanoribbon devices
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Google™ Scholar:Vacacela Gómez, Cristian - Pisarra, Michele - Gravina, Mario - Sindona, Antonello

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