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- W2076322840 abstract "Motivated by innovative progresses in designing multi-layer graphene nanostructured materials in the laboratory, we theoretically investigate the Dirac plasmon modes of a spatially separated double-layer graphene nanoribbon system, made up of a vertically offset armchair and metallic graphene nanoribbon pair. We find striking features of the collective excitations in this novel Coulomb correlated system, where both nanoribbons are supposed to be either intrinsic (undoped/ungated) or extrinsic (doped/gated). In the former, it is shown the low-energy acoustical and the high-energy optical plasmon modes are tunable only by the inter-ribbon charge separation. In the later, the aforementioned plasmon branches are modified by the added doping factor. As a result, our model could be useful to examine the existence of a linear Landau-undamped low-energy acoustical plasmon mode tuned via the inter-ribbon charge separation as well as doping. This study might also be utilized for devising novel quantum optical waveguides based on the Coulomb coupled graphene nanoribbons." @default.
- W2076322840 created "2016-06-24" @default.
- W2076322840 creator A5089275723 @default.
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- W2076322840 date "2014-05-01" @default.
- W2076322840 modified "2023-10-07" @default.
- W2076322840 title "Plasmons in spatially separated double-layer graphene nanoribbons" @default.
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- W2076322840 doi "https://doi.org/10.1063/1.4873639" @default.
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