International audienceAn adapted method of optimization of coated metallic nanoparticles is introduced to perform the optimal choice of material and sizes for better scattering or absorption efficiency. This design of nanoshells, involving plasmon resonance, is achieved to maximize the efficiency factors. The presented method is turned to tune the efficiency of nanoshells for biomedical applications and an increasing of the efficiency factors by 1 or 2 orders of magnitude is predicted with realistic materials
International audienceThe paper outlines the optimization of plasmonic nanostructures in order to im...
International audienceIn this paper the Evolutionary Method (EM) and the Particle Swarm Optimization...
The plasmon resonance in metallic nanoshells can be used to efficiently harvest solar energy and con...
International audienceAn adapted method of optimization of coated metallic nanoparticles is introduc...
Metal nanoshells possess plasmon resonances that are controlled by the geometry of the nanoparticle....
International audienceWe investigate the problem of synthesizing plasmonic nanostructures through th...
Metallic nanoparticles are routinely used as nanoscale antenna capable of absorbing and converting p...
We present a detailed analysis of nanoparticle trapping using plasmonic nanostructures, which predic...
International audienceIn this paper, we optimize the size parameters of hollow nanospheres and nanos...
Metallic nanoparticles are routinely used as nanoscale antenna capable of absorbing and converting p...
Photons interaction with metallic nanoparticles can excite a resonant plasmon that concentrates ener...
Interest in metal nanostructures stems from their unique optical properties related with single-part...
Plasmonics, a sub-field of nanophotonics, has attracted amazing interests in recent years due to its...
In this thesis, I demonstrate the rational design and controllable fabrication of a series of novel ...
Plasmonic sensors based on ordered arrays of nanoprisms are optimized in terms of their geometric pa...
International audienceThe paper outlines the optimization of plasmonic nanostructures in order to im...
International audienceIn this paper the Evolutionary Method (EM) and the Particle Swarm Optimization...
The plasmon resonance in metallic nanoshells can be used to efficiently harvest solar energy and con...
International audienceAn adapted method of optimization of coated metallic nanoparticles is introduc...
Metal nanoshells possess plasmon resonances that are controlled by the geometry of the nanoparticle....
International audienceWe investigate the problem of synthesizing plasmonic nanostructures through th...
Metallic nanoparticles are routinely used as nanoscale antenna capable of absorbing and converting p...
We present a detailed analysis of nanoparticle trapping using plasmonic nanostructures, which predic...
International audienceIn this paper, we optimize the size parameters of hollow nanospheres and nanos...
Metallic nanoparticles are routinely used as nanoscale antenna capable of absorbing and converting p...
Photons interaction with metallic nanoparticles can excite a resonant plasmon that concentrates ener...
Interest in metal nanostructures stems from their unique optical properties related with single-part...
Plasmonics, a sub-field of nanophotonics, has attracted amazing interests in recent years due to its...
In this thesis, I demonstrate the rational design and controllable fabrication of a series of novel ...
Plasmonic sensors based on ordered arrays of nanoprisms are optimized in terms of their geometric pa...
International audienceThe paper outlines the optimization of plasmonic nanostructures in order to im...
International audienceIn this paper the Evolutionary Method (EM) and the Particle Swarm Optimization...
The plasmon resonance in metallic nanoshells can be used to efficiently harvest solar energy and con...