We employ tip-enhanced infrared near-field microscopy to study the plasmonic properties of epitaxial quasi-free-standing monolayer graphene on silicon carbide. The near-field images reveal propagating graphene plasmons, as well as a strong plasmon reflection at gaps in the graphene layer, which appear at the steps between the SiC terraces. When the step height is around 1.5 nm, which is two orders of magnitude smaller than the plasmon wavelength, the reflection signal reaches 20% of its value at graphene edges, and it approaches 50% for step heights as small as 5 nm. This intriguing observation is corroborated by numerical simulations and explained by the accumulation of a line charge at the graphene termination. The associated electromagne...
Plasmons produce large confinement and enhancement of light that enable applications as varied as ca...
An acoustic plasmon mode in a graphene-dielectric-metal structure has recently been spotlighted as a...
Optical computing has been proposed for high performance applications owing to light\u27s hi...
We employ tip-enhanced infrared near-field microscopy to study the plasmonic properties of epitaxial...
We used scattering-type scanning near-field optical microscopy (s-SNOM) to investigate the plasmonic...
This dissertation presents infrared nano-spectroscopy and nano-imaging studies of graphene plasmons ...
Graphene has been identified as an emerging horizon for a nanoscale photonic platform because the Fe...
Graphene has been identified as an emerging horizon for a nanoscale photonic platform because the Fe...
Graphene has been identified as an emerging horizon for a nanoscale photonic platform because the Fe...
Plasmonics aims to combine the advantages of nanometer scale electronics with the high operating fre...
Graphene, a two-dimensional honeycomb lattice of carbon atoms of great interest in (opto)electronics...
Graphene is a promising two-dimensional platform for widespread nanophotonic applications. Recent th...
Surface plasmons in graphene have many promising properties, such as high confinement, low losses, a...
Surface plasmons in graphene have many promising properties, such as high confinement, low losses, a...
13 pags, 10 figs© 2013 Science Wise Publishing. Plasmons produce large confinement and enhancement o...
Plasmons produce large confinement and enhancement of light that enable applications as varied as ca...
An acoustic plasmon mode in a graphene-dielectric-metal structure has recently been spotlighted as a...
Optical computing has been proposed for high performance applications owing to light\u27s hi...
We employ tip-enhanced infrared near-field microscopy to study the plasmonic properties of epitaxial...
We used scattering-type scanning near-field optical microscopy (s-SNOM) to investigate the plasmonic...
This dissertation presents infrared nano-spectroscopy and nano-imaging studies of graphene plasmons ...
Graphene has been identified as an emerging horizon for a nanoscale photonic platform because the Fe...
Graphene has been identified as an emerging horizon for a nanoscale photonic platform because the Fe...
Graphene has been identified as an emerging horizon for a nanoscale photonic platform because the Fe...
Plasmonics aims to combine the advantages of nanometer scale electronics with the high operating fre...
Graphene, a two-dimensional honeycomb lattice of carbon atoms of great interest in (opto)electronics...
Graphene is a promising two-dimensional platform for widespread nanophotonic applications. Recent th...
Surface plasmons in graphene have many promising properties, such as high confinement, low losses, a...
Surface plasmons in graphene have many promising properties, such as high confinement, low losses, a...
13 pags, 10 figs© 2013 Science Wise Publishing. Plasmons produce large confinement and enhancement o...
Plasmons produce large confinement and enhancement of light that enable applications as varied as ca...
An acoustic plasmon mode in a graphene-dielectric-metal structure has recently been spotlighted as a...
Optical computing has been proposed for high performance applications owing to light\u27s hi...