We reveal that asymmetric plasmonic nanostructures can exhibit significantly different absorption and scattering properties for light that propagates in opposite directions, despite the conservation of total extinction. We analytically demonstrate that this is a consequence of nonorthogonality of eigenmodes of the system. This results in the necessity for modal interference with potential enhancement via Fano resonances. Based on our theory, we propose a stacked nanocross design whose optical response exhibits an abrupt change between absorption and scattering cross-sections for plane waves propagating in opposite directions. This work thereby proposes the use of Fano resonances to employ nanostructures for measuring and distinguishing opti...
Fano resonance refers to an interference between localized and continuum states that was firstly rep...
International audienceThe scattering properties of plasmonic nanostructures arranged in two-dimensio...
International audienceHigh refractive index dielectric nanostructures provide original optical prope...
We reveal that asymmetric plasmonic nanostructures can exhibit significantly different absorption an...
Since its discovery, the asymmetric Fano resonance has been a characteristic feature of interacting ...
Fano resonances manifest novel phenomena both in linear and nonlinear response of plasmonic nanomate...
We study the light scattering by plasmonic and dielectric symmetric trimers to investigate the exist...
textManipulating electromagnetic fields with plasmonic nanostructures has attracted researchers from...
We demonstrate that optical Fano resonance can be induced by the anisotropy of a cylinder rather tha...
Fano resonances in plasmonics have received widespread attention for their distinctly narrow asymmet...
Fano resonances are features in transmissivity/reflectivity/absorption that owe their origin to the ...
Resumen del trabajo presentado a la Spanish Conference on Nanophotonics (Conferencia Española de Nan...
Fano resonance refers to an interference between localized and continuum states that was firstly rep...
Plasmonic nanoantennas can feature a sophisticated spectral response that may be the springboard for...
In this paper, we develop a quasielectrostatic theory describing the coupling of plasmon modes and w...
Fano resonance refers to an interference between localized and continuum states that was firstly rep...
International audienceThe scattering properties of plasmonic nanostructures arranged in two-dimensio...
International audienceHigh refractive index dielectric nanostructures provide original optical prope...
We reveal that asymmetric plasmonic nanostructures can exhibit significantly different absorption an...
Since its discovery, the asymmetric Fano resonance has been a characteristic feature of interacting ...
Fano resonances manifest novel phenomena both in linear and nonlinear response of plasmonic nanomate...
We study the light scattering by plasmonic and dielectric symmetric trimers to investigate the exist...
textManipulating electromagnetic fields with plasmonic nanostructures has attracted researchers from...
We demonstrate that optical Fano resonance can be induced by the anisotropy of a cylinder rather tha...
Fano resonances in plasmonics have received widespread attention for their distinctly narrow asymmet...
Fano resonances are features in transmissivity/reflectivity/absorption that owe their origin to the ...
Resumen del trabajo presentado a la Spanish Conference on Nanophotonics (Conferencia Española de Nan...
Fano resonance refers to an interference between localized and continuum states that was firstly rep...
Plasmonic nanoantennas can feature a sophisticated spectral response that may be the springboard for...
In this paper, we develop a quasielectrostatic theory describing the coupling of plasmon modes and w...
Fano resonance refers to an interference between localized and continuum states that was firstly rep...
International audienceThe scattering properties of plasmonic nanostructures arranged in two-dimensio...
International audienceHigh refractive index dielectric nanostructures provide original optical prope...