Surface plasmon has the unique capability to concentrate light into subwavelength volume.− Active plasmon devices using electrostatic gating can enable flexible control of the plasmon excitations, which has been demonstrated recently in terahertz plasmonic structures.− Controlling plasmon resonance at optical frequencies, however, remains a significant challenge because gate-induced free electrons have very weak responses at optical frequencies. Here we achieve efficient control of near-infrared plasmon resonance in a hybrid graphene-gold nanorod system. Exploiting the uniquely strong, and gate-tunable optical transitions, of graphene, we are able to significantly modulate both the resonance frequency and quality factor of gold nanorod plas...
Graphene can support surface plasmons with higher confinement, lower propagation loss, and substanti...
Graphene is used as the thinnest possible spacer between gold nanoparticles and a gold substrate. Th...
Graphene is used as the thinnest possible spacer between gold nanoparticles and a gold substrate. Th...
Surface plasmon has the unique capability to concentrate light into subwavelength volume.(1-5) Activ...
ABSTRACT: Surface plasmon has the unique capability to concentrate light into subwavelength volume.1...
Plasmonics is the study of interaction of light with subwavelength metallic structures. Plasmonic na...
Light incident on a metallic structure excites collective oscillations of electrons termed as plasmo...
Dynamic switching of a plasmonic resonance may find numerous applications in subwavelength optoelect...
Dynamic switching of a plasmonic resonance may find numerous applications in subwavelength optoelect...
Graphene exhibits intriguing electronic and optical properties, making it promising for integrating ...
Graphene has emerged as an outstanding material for optoelectronic applications due to its high elec...
Two rich and vibrant fields of investigation - graphene and plasmonics - strongly overlap in this wo...
We report active electrical tuning of plasmon resonance of silver nanoprisms (Ag NPs) in the visible...
We observe and theoretically study new plasmon resonances in hybrid metalgraphene structures. We dem...
Plasmonic excitations, consisting of collective oscillations of the electron gas in a conductive fil...
Graphene can support surface plasmons with higher confinement, lower propagation loss, and substanti...
Graphene is used as the thinnest possible spacer between gold nanoparticles and a gold substrate. Th...
Graphene is used as the thinnest possible spacer between gold nanoparticles and a gold substrate. Th...
Surface plasmon has the unique capability to concentrate light into subwavelength volume.(1-5) Activ...
ABSTRACT: Surface plasmon has the unique capability to concentrate light into subwavelength volume.1...
Plasmonics is the study of interaction of light with subwavelength metallic structures. Plasmonic na...
Light incident on a metallic structure excites collective oscillations of electrons termed as plasmo...
Dynamic switching of a plasmonic resonance may find numerous applications in subwavelength optoelect...
Dynamic switching of a plasmonic resonance may find numerous applications in subwavelength optoelect...
Graphene exhibits intriguing electronic and optical properties, making it promising for integrating ...
Graphene has emerged as an outstanding material for optoelectronic applications due to its high elec...
Two rich and vibrant fields of investigation - graphene and plasmonics - strongly overlap in this wo...
We report active electrical tuning of plasmon resonance of silver nanoprisms (Ag NPs) in the visible...
We observe and theoretically study new plasmon resonances in hybrid metalgraphene structures. We dem...
Plasmonic excitations, consisting of collective oscillations of the electron gas in a conductive fil...
Graphene can support surface plasmons with higher confinement, lower propagation loss, and substanti...
Graphene is used as the thinnest possible spacer between gold nanoparticles and a gold substrate. Th...
Graphene is used as the thinnest possible spacer between gold nanoparticles and a gold substrate. Th...