Nanoshell and Matryoshka-nanoshell constructs are rationally optimized utilizing the finite-difference time-domain method to design probes with enhanced fluorescence. Through the systematical investigation of interactions between the spontaneous emission of a single emitter and a metal-based nanostructure, the plasmonic-enhanced fluorescence is found maximal for certain morphologies that balance two competitive factors: field enhancement and quantum efficiency. For instance, key parameters such as the emitter’s position, its orientation, and the spectral overlaps between molecular bands and plasmon resonance are investigated to fully understand the complete behavior of the system. In the case of metal nanoshells, it is shown that the molecu...
Coupling to metal nanoparticles can increase the fluorescence intensity and photostability of fluore...
The radiative processes associated with fluorophores and other radiating systems can be profoundly m...
In metal-enhanced fluorescence (MEF), the localized surface plasmon resonances of metallic nanostruc...
Nanoshell and Matryoshka-nanoshell constructs are rationally optimized utilizing the finite-differen...
cited By 24International audienceNanoshell and Matryoshka-nanoshell constructs are rationally optimi...
Single gold nanoshell with mutilpolar plasmon resonances is proposed to enhance two-photon fluoresce...
Metal nanoshells possess plasmon resonances that are controlled by the geometry of the nanoparticle....
ABSTRACT: Metallic nanoparticles exhibiting plasmonic Fano resonances can provide large enhancements...
Optical nanoantennas are very efficient for manipulating and controlling light. These nanoantennas s...
We study the light emission from a quantum emitter and double metallic nanoshell hybrid systems. Qua...
Fluorescence spectroscopy with strong emitters is a remarkable tool with ultra-high sensitivity for ...
International audienceNumerous research efforts are investigating the possibility of using light int...
Abstract The metallodielectric hybrid nanoantenna integrating plasmonic nanostructures with dielectr...
Metallic nanoparticles exhibiting plasmonic Fano resonances can provide large enhancements of their ...
The present work focuses on the modification of spontaneous emission of fluorescent emitters using m...
Coupling to metal nanoparticles can increase the fluorescence intensity and photostability of fluore...
The radiative processes associated with fluorophores and other radiating systems can be profoundly m...
In metal-enhanced fluorescence (MEF), the localized surface plasmon resonances of metallic nanostruc...
Nanoshell and Matryoshka-nanoshell constructs are rationally optimized utilizing the finite-differen...
cited By 24International audienceNanoshell and Matryoshka-nanoshell constructs are rationally optimi...
Single gold nanoshell with mutilpolar plasmon resonances is proposed to enhance two-photon fluoresce...
Metal nanoshells possess plasmon resonances that are controlled by the geometry of the nanoparticle....
ABSTRACT: Metallic nanoparticles exhibiting plasmonic Fano resonances can provide large enhancements...
Optical nanoantennas are very efficient for manipulating and controlling light. These nanoantennas s...
We study the light emission from a quantum emitter and double metallic nanoshell hybrid systems. Qua...
Fluorescence spectroscopy with strong emitters is a remarkable tool with ultra-high sensitivity for ...
International audienceNumerous research efforts are investigating the possibility of using light int...
Abstract The metallodielectric hybrid nanoantenna integrating plasmonic nanostructures with dielectr...
Metallic nanoparticles exhibiting plasmonic Fano resonances can provide large enhancements of their ...
The present work focuses on the modification of spontaneous emission of fluorescent emitters using m...
Coupling to metal nanoparticles can increase the fluorescence intensity and photostability of fluore...
The radiative processes associated with fluorophores and other radiating systems can be profoundly m...
In metal-enhanced fluorescence (MEF), the localized surface plasmon resonances of metallic nanostruc...