Single gold nanoshell with mutilpolar plasmon resonances is proposed to enhance two-photon fluorescence efficiently. The single emitter single nanoshell configuration is studied systematically by employing the finite-difference time-domain method. The emitter located inside or outside the nanoshell at various positions leads to a significantly different enhancement effect. The fluorescent emitter placed outside the nanoshell can achieve large fluorescence intensity given that both the position and orientation of the emission dipole are optimally controlled. In contrast, for the case of the emitter placed inside the nanoshell, it can experience substantial two-photon fluorescence enhancement without strict requirements upon the position and ...
Metal nanoshells possess plasmon resonances that are controlled by the geometry of the nanoparticle....
International audienceWe propose and justify by the finite-difference time-domain method an efficien...
Multi-resonant plasmonic simple geometries like nanocylinders and nanorods are highly interesting fo...
Nanoshell and Matryoshka-nanoshell constructs are rationally optimized utilizing the finite-differen...
cited By 24International audienceNanoshell and Matryoshka-nanoshell constructs are rationally optimi...
Nanoshell and Matryoshka-nanoshell constructs are rationally optimized utilizing the finite-differen...
A single gold nano-cylinder presenting multipolar plasmon resonances to enhance two-photon fluoresce...
cited By 6International audienceA single gold nano-cylinder presenting multipolar plasmon resonances...
We study the light emission from a quantum emitter and double metallic nanoshell hybrid systems. Qua...
Anisotropic noble metal nanoparticles supporting more than one localized surface plasmon resonance c...
Localized surface plasmon resonances excited in metallic nanoparticles confine and enhance electroma...
This thesis aims to improve the detection from ultra-weak single emitter by enhancing their emission...
Two-photon excited fluorescence of organic dye by embedding them with gold nanostructures fabricated...
Plasmon enhancement of optical properties is both fundamentally important and appealing for many bio...
In this study, molecule fluorescence modified by slit-based nanoantennas surrounded with metal grati...
Metal nanoshells possess plasmon resonances that are controlled by the geometry of the nanoparticle....
International audienceWe propose and justify by the finite-difference time-domain method an efficien...
Multi-resonant plasmonic simple geometries like nanocylinders and nanorods are highly interesting fo...
Nanoshell and Matryoshka-nanoshell constructs are rationally optimized utilizing the finite-differen...
cited By 24International audienceNanoshell and Matryoshka-nanoshell constructs are rationally optimi...
Nanoshell and Matryoshka-nanoshell constructs are rationally optimized utilizing the finite-differen...
A single gold nano-cylinder presenting multipolar plasmon resonances to enhance two-photon fluoresce...
cited By 6International audienceA single gold nano-cylinder presenting multipolar plasmon resonances...
We study the light emission from a quantum emitter and double metallic nanoshell hybrid systems. Qua...
Anisotropic noble metal nanoparticles supporting more than one localized surface plasmon resonance c...
Localized surface plasmon resonances excited in metallic nanoparticles confine and enhance electroma...
This thesis aims to improve the detection from ultra-weak single emitter by enhancing their emission...
Two-photon excited fluorescence of organic dye by embedding them with gold nanostructures fabricated...
Plasmon enhancement of optical properties is both fundamentally important and appealing for many bio...
In this study, molecule fluorescence modified by slit-based nanoantennas surrounded with metal grati...
Metal nanoshells possess plasmon resonances that are controlled by the geometry of the nanoparticle....
International audienceWe propose and justify by the finite-difference time-domain method an efficien...
Multi-resonant plasmonic simple geometries like nanocylinders and nanorods are highly interesting fo...