We report a powerful and general concept for the design of three-dimensional metamaterials suitable for optically probed nanoscale sensing, combining the environmental sensitivity of localized surface plasmon resonances (LSPRs) and a low absorption of the probe light, even when the LSPRs are supported by lossy plasmonic elements. This concept is based on the tuning of the plasmon-induced Brewster conditions (angle of incidence and photon energy) of the material by suitable tailoring of its structure. This tuning is made possible by the interplay between LSPRs and optical interferences, i.e., the so-called plasmonic optical interferences. The plasmon-induced Brewster photon energy can be set outside the spectral range of the LSPR, thus in a ...
International audienceBy using methods of laser-induced transfer combined with nanoparticle lithogra...
The study of materials with nanoscale dimensions has gained wide spread research interest as these e...
Plasmonic nanoparticles feature remarkable optical and electronic properties in consequence ...
We report a powerful and general concept for the design of three-dimensional metamaterials suitable ...
Metamaterials are man-made artificial materials of which the optical properties can be engineered to...
Metamaterials are artificial materials designed to create optical properties that do not exist in na...
Metallic metamaterials have shown a number of fascinating properties over the last few years. A nega...
Materials show various responses to incident light, owing to their unique dielectric functions. A we...
Tailoring optical properties of artificial metamaterials, whose optical properties go beyond the lim...
Conference on Synthesis and Photonics of Nanoscale Materials XIII, San Francisco, CA, FEB 15-17, 201...
Localized surface plasmons are collective electron oscillations in metallic nanostructures at optica...
Various nanostructured materials display unique and interesting optical properties. Specific nanosca...
Fundamental study on plasmonics excites surface plasmons opening possibility for stronger light-matt...
Driven by a demand for integrated optical sensors in structural health and environmental monitoring ...
This dissertation presents new advancements in the theory, design, and fabrication of nanoplasmonic ...
International audienceBy using methods of laser-induced transfer combined with nanoparticle lithogra...
The study of materials with nanoscale dimensions has gained wide spread research interest as these e...
Plasmonic nanoparticles feature remarkable optical and electronic properties in consequence ...
We report a powerful and general concept for the design of three-dimensional metamaterials suitable ...
Metamaterials are man-made artificial materials of which the optical properties can be engineered to...
Metamaterials are artificial materials designed to create optical properties that do not exist in na...
Metallic metamaterials have shown a number of fascinating properties over the last few years. A nega...
Materials show various responses to incident light, owing to their unique dielectric functions. A we...
Tailoring optical properties of artificial metamaterials, whose optical properties go beyond the lim...
Conference on Synthesis and Photonics of Nanoscale Materials XIII, San Francisco, CA, FEB 15-17, 201...
Localized surface plasmons are collective electron oscillations in metallic nanostructures at optica...
Various nanostructured materials display unique and interesting optical properties. Specific nanosca...
Fundamental study on plasmonics excites surface plasmons opening possibility for stronger light-matt...
Driven by a demand for integrated optical sensors in structural health and environmental monitoring ...
This dissertation presents new advancements in the theory, design, and fabrication of nanoplasmonic ...
International audienceBy using methods of laser-induced transfer combined with nanoparticle lithogra...
The study of materials with nanoscale dimensions has gained wide spread research interest as these e...
Plasmonic nanoparticles feature remarkable optical and electronic properties in consequence ...