We study the light scattering by plasmonic and dielectric symmetric trimers to investigate the existence of polarization-independent Fano resonances. Plasmonic hybridization theory is revealed to hide simple physics, and we instead provide a simplified model for hybridization to derive a plasmonic trimer's eigenmodes analytically. This approach is demonstrated to accurately recreate full wave simulations of plasmonic trimers and their Fano resonances. We are subsequently able to deduce the grounds for modal interference in plasmonic trimers and the related formation of Fano resonances. However, by generalizing our simplified hybridization approach, we are also able to investigate the eigenmodes of all-dielectric trimers. We show that bianis...
textManipulating electromagnetic fields with plasmonic nanostructures has attracted researchers from...
International audienceHigh refractive index dielectric nanostructures provide original optical prope...
Plasmonic artificial molecules are promising platforms for linear and nonlinear optical modulation a...
We demonstrate that light scattering by all-dielectric oligomers exhibits well-pronounced Fano reson...
Fano resonances are features in transmissivity/reflectivity/absorption that owe their origin to the ...
It is well-known that oligomers made of metallic nanoparticles are able to support sharp Fano resona...
We reveal that asymmetric plasmonic nanostructures can exhibit significantly different absorption an...
In this work we theoretically and experimentally analyze the resonant behavior of individual 3 × 3 g...
The optical properties of plasmonic nanoring pentamers are experimentally and theoretically investig...
We discuss nanophotonic structures composed of high-index dielectric nanoparticles and present sever...
Plasmonic nanoantennas can feature a sophisticated spectral response that may be the springboard for...
The plasmon hybridization theory is based on a quasi-electrostatic approximation of the Maxwell’s eq...
In this paper, we develop a quasielectrostatic theory describing the coupling of plasmon modes and w...
Since its discovery, the asymmetric Fano resonance has been a characteristic feature of interacting ...
textManipulating electromagnetic fields with plasmonic nanostructures has attracted researchers from...
International audienceHigh refractive index dielectric nanostructures provide original optical prope...
Plasmonic artificial molecules are promising platforms for linear and nonlinear optical modulation a...
We demonstrate that light scattering by all-dielectric oligomers exhibits well-pronounced Fano reson...
Fano resonances are features in transmissivity/reflectivity/absorption that owe their origin to the ...
It is well-known that oligomers made of metallic nanoparticles are able to support sharp Fano resona...
We reveal that asymmetric plasmonic nanostructures can exhibit significantly different absorption an...
In this work we theoretically and experimentally analyze the resonant behavior of individual 3 × 3 g...
The optical properties of plasmonic nanoring pentamers are experimentally and theoretically investig...
We discuss nanophotonic structures composed of high-index dielectric nanoparticles and present sever...
Plasmonic nanoantennas can feature a sophisticated spectral response that may be the springboard for...
The plasmon hybridization theory is based on a quasi-electrostatic approximation of the Maxwell’s eq...
In this paper, we develop a quasielectrostatic theory describing the coupling of plasmon modes and w...
Since its discovery, the asymmetric Fano resonance has been a characteristic feature of interacting ...
textManipulating electromagnetic fields with plasmonic nanostructures has attracted researchers from...
International audienceHigh refractive index dielectric nanostructures provide original optical prope...
Plasmonic artificial molecules are promising platforms for linear and nonlinear optical modulation a...