Interaction between localized plasmons in isolated proximal nanostructures is a well-studied phenomenon. Here we explore plasmon-plasmon interactions in connected extended systems. Such systems can now be easily produced experimentally using graphene. However, the mechanisms of plasmonic interactions in extended systems are not well understood. We employ finite-element methods to study these interactions in graphene superlattice nanoribbon arrays with a periodically modulated electrochemical potential or number of layers. We find a rich variation in the resulting plasmonic resonances depending on the dimensions, the electrochemical potentials (doping), and the separation of the nanoribbon segments, and we demonstrate the involvement of both...
We predict the existence of low-frequency nonlocal plasmons at the vacuum-surface interface of a sup...
We predict the existence of low-frequency nonlocal plasmons at the vacuum-surface interface of a sup...
Plasmons, collective electron density oscillations, provide physicists with intriguing challenges an...
Among their amazing properties, graphene and related low-dimensional materials show quantized charge...
The collective oscillation of the massless electrons in graphene ribbons can interact with photons t...
Understanding and controlling collective oscillations of electrons in graphene have enabled new clas...
Plasmons are collective excitations of electrons in solids. The ability to change their properties b...
We find the low-frequency optical response of highly doped individual and arrayed graphene nanoribbo...
We find the low-frequency optical response of highly doped individual and arrayed graphene nanoribbo...
Plasmonics is the study of interaction of light with subwavelength metallic structures. Plasmonic na...
Graphene has emerged as an outstanding material for optoelectronic applications due to its high elec...
We observe and theoretically study new plasmon resonances in hybrid metalgraphene structures. We dem...
We explore the effects of surface plasmon hybridization in graphene nanostructures and silver nanopa...
<p>We explore the effects of surface plasmon hybridization in graphene nanostructures and silver nan...
We predict the existence of low-frequency nonlocal plasmons at the vacuum-surface interface of a sup...
We predict the existence of low-frequency nonlocal plasmons at the vacuum-surface interface of a sup...
We predict the existence of low-frequency nonlocal plasmons at the vacuum-surface interface of a sup...
Plasmons, collective electron density oscillations, provide physicists with intriguing challenges an...
Among their amazing properties, graphene and related low-dimensional materials show quantized charge...
The collective oscillation of the massless electrons in graphene ribbons can interact with photons t...
Understanding and controlling collective oscillations of electrons in graphene have enabled new clas...
Plasmons are collective excitations of electrons in solids. The ability to change their properties b...
We find the low-frequency optical response of highly doped individual and arrayed graphene nanoribbo...
We find the low-frequency optical response of highly doped individual and arrayed graphene nanoribbo...
Plasmonics is the study of interaction of light with subwavelength metallic structures. Plasmonic na...
Graphene has emerged as an outstanding material for optoelectronic applications due to its high elec...
We observe and theoretically study new plasmon resonances in hybrid metalgraphene structures. We dem...
We explore the effects of surface plasmon hybridization in graphene nanostructures and silver nanopa...
<p>We explore the effects of surface plasmon hybridization in graphene nanostructures and silver nan...
We predict the existence of low-frequency nonlocal plasmons at the vacuum-surface interface of a sup...
We predict the existence of low-frequency nonlocal plasmons at the vacuum-surface interface of a sup...
We predict the existence of low-frequency nonlocal plasmons at the vacuum-surface interface of a sup...
Plasmons, collective electron density oscillations, provide physicists with intriguing challenges an...