This is the author accepted manuscript. The final version is available from American Chemical Society via the DOI in this record.We study plasmonic resonances in electrostatically gated graphene nanoribbons on silicon dioxide substrates. Absorption spectra are measured in the mid-far infrared and reveal multiple peaks, with width-dependent resonant frequencies. We calculate the dielectric function within the random phase approximation and show that the observed spectra can be explained by surface-plasmon-phonon-polariton modes, which arise from coupling of the graphene plasmon to three surface optical phonon modes in the silicon dioxide.This research was supported by the UK Engineering and Physical Sciences Research Council, via the award o...
Collective oscillations of massless particles in two-dimensional (2D) Dirac materials offer an innov...
Plasmonics aims to combine the advantages of nanometer scale electronics with the high operating fre...
The possibility of hybridizing collective electronic motion with mid-infrared photons in so-called s...
We experimentally demonstrated graphene plasmon resonant absorption in mid-IR by utilizing an array ...
We experimentally demonstrated graphene plasmon resonant absorption in mid-IR by utilizing an array ...
Single-layer graphene has been shown to have intriguing prospects as a plasmonic material, as modes ...
Single-layer graphene has been shown to have intriguing prospects as a plasmonic material, as modes ...
Single-layer graphene has been shown to have intriguing prospects as a plasmonic material, as modes ...
Plasmonics takes advantage of the collective response of electrons to electromagnetic waves, enablin...
We report mid-infrared photocurrent spectra of graphene nanoribbon arrays on SiO<sub>2</sub> dielect...
Plasmon is the quantum of the collective oscillation of electrons. How plasmon loses its energy (or ...
This dissertation presents infrared nano-spectroscopy and nano-imaging studies of graphene plasmons ...
Using inelastic electron scattering in combination with dielectric theory simulations on differently...
Graphene plasmons are known to offer an unprecedented level of confinement and enhancement of electr...
Plasmons are collective excitations of electrons in solids. The ability to change their properties b...
Collective oscillations of massless particles in two-dimensional (2D) Dirac materials offer an innov...
Plasmonics aims to combine the advantages of nanometer scale electronics with the high operating fre...
The possibility of hybridizing collective electronic motion with mid-infrared photons in so-called s...
We experimentally demonstrated graphene plasmon resonant absorption in mid-IR by utilizing an array ...
We experimentally demonstrated graphene plasmon resonant absorption in mid-IR by utilizing an array ...
Single-layer graphene has been shown to have intriguing prospects as a plasmonic material, as modes ...
Single-layer graphene has been shown to have intriguing prospects as a plasmonic material, as modes ...
Single-layer graphene has been shown to have intriguing prospects as a plasmonic material, as modes ...
Plasmonics takes advantage of the collective response of electrons to electromagnetic waves, enablin...
We report mid-infrared photocurrent spectra of graphene nanoribbon arrays on SiO<sub>2</sub> dielect...
Plasmon is the quantum of the collective oscillation of electrons. How plasmon loses its energy (or ...
This dissertation presents infrared nano-spectroscopy and nano-imaging studies of graphene plasmons ...
Using inelastic electron scattering in combination with dielectric theory simulations on differently...
Graphene plasmons are known to offer an unprecedented level of confinement and enhancement of electr...
Plasmons are collective excitations of electrons in solids. The ability to change their properties b...
Collective oscillations of massless particles in two-dimensional (2D) Dirac materials offer an innov...
Plasmonics aims to combine the advantages of nanometer scale electronics with the high operating fre...
The possibility of hybridizing collective electronic motion with mid-infrared photons in so-called s...