The peculiar properties of a pair of nanoantennas fed at a gap region have been studied. The possibility of controlling the radiation pattern at the nanoscale is demonstrated: indeed, unidirectional radiation can be obtained by placing two identical nanorods at a distance which is in the order of (in stark contrast with the typical quarter-wavelength spacing of Yagi-Uda antennas), and scales down with increasing effective index of the plasmonic mode of the single cylindrical rod. Powerful techniques borrowed from electrical engineering have been applied in order to justify in an elegant and straightforward way the behavior of the nanostructure at optical frequencies
In this paper, we report a characteristic transmission control property of a nano-optical system by ...
We demonstrate experimentally that plasmon resonant nanoparticle chains exhibit a nanoscale localize...
International audienceWe study the optical coupling between a gold nanowire and a silver ion-exchang...
The peculiar properties of a pair of nanoantennas fed at a gap region have been studied. The possibi...
We analyze the radiative properties of a couple of optical nanoantennas fed at a gap region. We demo...
We address new optical nanoantenna systems with tunable highly directional radiation patterns. The a...
The research area of plasmonics promises devices with ultrasmall footprint operating at ultrafast sp...
This dissertation presents a theoretical study of the design of optical nanoantennas and antenna arr...
AYagi-Uda-like optical nanoantenna concept using resonant core-shell plasmonic particles as its “ref...
The radiative processes associated with fluorophores and other radiating systems can be profoundly m...
An optical analogue of the well-established radio-frequency Yagi- Uda antenna, stands out by its eff...
bS Supporting Information Over the past few years, increasingly sophisticated structuringtechniques ...
We apply two- and three-dimensional numerical calculations to study optical nanoantennae made of two...
Resonant optical nanoantennas hold great promise for applications in physics and chemistry. Their op...
The large cross sections and strong confinement provided by the plasmon resonances of metallic nanos...
In this paper, we report a characteristic transmission control property of a nano-optical system by ...
We demonstrate experimentally that plasmon resonant nanoparticle chains exhibit a nanoscale localize...
International audienceWe study the optical coupling between a gold nanowire and a silver ion-exchang...
The peculiar properties of a pair of nanoantennas fed at a gap region have been studied. The possibi...
We analyze the radiative properties of a couple of optical nanoantennas fed at a gap region. We demo...
We address new optical nanoantenna systems with tunable highly directional radiation patterns. The a...
The research area of plasmonics promises devices with ultrasmall footprint operating at ultrafast sp...
This dissertation presents a theoretical study of the design of optical nanoantennas and antenna arr...
AYagi-Uda-like optical nanoantenna concept using resonant core-shell plasmonic particles as its “ref...
The radiative processes associated with fluorophores and other radiating systems can be profoundly m...
An optical analogue of the well-established radio-frequency Yagi- Uda antenna, stands out by its eff...
bS Supporting Information Over the past few years, increasingly sophisticated structuringtechniques ...
We apply two- and three-dimensional numerical calculations to study optical nanoantennae made of two...
Resonant optical nanoantennas hold great promise for applications in physics and chemistry. Their op...
The large cross sections and strong confinement provided by the plasmon resonances of metallic nanos...
In this paper, we report a characteristic transmission control property of a nano-optical system by ...
We demonstrate experimentally that plasmon resonant nanoparticle chains exhibit a nanoscale localize...
International audienceWe study the optical coupling between a gold nanowire and a silver ion-exchang...