4.6 Article

Surface plasmon enhanced absorption and suppressed transmission in periodic arrays of graphene ribbons

Journal

PHYSICAL REVIEW B
Volume 85, Issue 8, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.85.081405

Keywords

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Funding

  1. Spanish MECD [MAT2009-06609-C02, FIS2008-00124, CONSOLIDER CSD2007-00010]
  2. Juan de la Cierva [JCI-2008-3123]

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Resonance diffraction in the periodic array of graphene microribbons is theoretically studied following a recent experiment [L. Ju et al., Nature Nanotech. 6, 630 (2011)]. Systematic studies over a wide range of parameters are presented. It is shown that a much richer resonant picture would be observable for higher relaxation times of charge carriers: More resonances appear and transmission can be totally suppressed. The comparison with the absorption cross-section of a single ribbon shows that the resonant features of the periodic array are associated with leaky plasmonic modes. The longest-wavelength resonance provides the highest visibility of the transmission dip and has the strongest spectral shift and broadening with respect to the single-ribbon resonance, due to collective effects.

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