International audienceMetallic nanoparticles are self-assembled into plasmonic nanorings. The self-assembly is evaporation-induced and is driven using a template of dielectric microspheres. We obtain well-ordered arrays of metallic nanorings over large areas. The inner and outer diameters of the rings, as well as the pitch of the array, are fully controllable. The optical resonances supported by the plasmonic rings are then characterized using extinction spectroscopy. Our approach opens a simple and inexpensive road to create plasmonic structures that can find applications as metamaterials or substrates for enhanced spectroscopies
Plasmonic nanoparticles with collective excitations of the conduction-band electrons have many poten...
We introduce a novel bottom-up approach to fabricate by self assembly a metamaterial from metallic n...
Metallic nanostructures that sustain plasmonic resonances are indispensable ingredients for many fun...
International audienceMetallic nanoparticles are self-assembled into plasmonic nanorings. The self-a...
International audienceMetallic nanoparticles are self-assembled into plasmonic nanorings using an ev...
International audienceMetal nanoparticles exhibit interesting optical properties due to the collecti...
ABSTRACT: Metallic nanostructures can be used to manip-ulate light on the subwavelength scale to cre...
Metallic nanostructures can be used to manipulate light on the subwavelength scale to create tailore...
International audienceThe investigation of the localized surface plasmon resonance for plasmonic nan...
THESIS 9509In this thesis an alternative self-assembled deposition technique able to produce nanopar...
The self-assembly of colloids is an alternative to top-down processing that enables the fabrication ...
Metallic nanostructures that sustain plasmonic resonances are indispensable ingredients for many fun...
Plasmonics is the science and technology exploiting the optical properties of surface free electrons...
Metallic nanostructures exhibit strong interactions with electromagnetic radiation, known as the loc...
Metallic nanostructures that sustain plasmonic resonances are indispensable ingredients for many fun...
Plasmonic nanoparticles with collective excitations of the conduction-band electrons have many poten...
We introduce a novel bottom-up approach to fabricate by self assembly a metamaterial from metallic n...
Metallic nanostructures that sustain plasmonic resonances are indispensable ingredients for many fun...
International audienceMetallic nanoparticles are self-assembled into plasmonic nanorings. The self-a...
International audienceMetallic nanoparticles are self-assembled into plasmonic nanorings using an ev...
International audienceMetal nanoparticles exhibit interesting optical properties due to the collecti...
ABSTRACT: Metallic nanostructures can be used to manip-ulate light on the subwavelength scale to cre...
Metallic nanostructures can be used to manipulate light on the subwavelength scale to create tailore...
International audienceThe investigation of the localized surface plasmon resonance for plasmonic nan...
THESIS 9509In this thesis an alternative self-assembled deposition technique able to produce nanopar...
The self-assembly of colloids is an alternative to top-down processing that enables the fabrication ...
Metallic nanostructures that sustain plasmonic resonances are indispensable ingredients for many fun...
Plasmonics is the science and technology exploiting the optical properties of surface free electrons...
Metallic nanostructures exhibit strong interactions with electromagnetic radiation, known as the loc...
Metallic nanostructures that sustain plasmonic resonances are indispensable ingredients for many fun...
Plasmonic nanoparticles with collective excitations of the conduction-band electrons have many poten...
We introduce a novel bottom-up approach to fabricate by self assembly a metamaterial from metallic n...
Metallic nanostructures that sustain plasmonic resonances are indispensable ingredients for many fun...