High refractive index dielectric nanoparticles show high promise as a complementary nanophotonics platform due to compared with plasmonic nanostructures low absorption losses and the co-existence of magnetic and electric resonances. Here we explore their use as resonantly enhanced directional scatterers. We theoretically demonstrate that an asymmetric dimer of silicon nanoparticles shows tuneable directional scattering depending on the frequency of excitation. This is due to the interference between electric and magnetic dipoles excited in each nanoparticle, enabling directional control of the scattered light. Interestingly, this control can be achieved regardless of the polarization direction with respect to the dimer axis; however, differ...
11 págs.; 4 figs.; 1 tab.Dimers of nanoparticles are very interesting for several devices due to the...
An optical antenna forms the subwavelength bridge between free space optical radiation and localized...
Recent progress in the study of resonant light confinement in high-index dielectric nanostructures s...
Dielectric nanoparticles offer low optical losses and access to both electric and magnetic Mie reson...
Due to the presence of strong magnetic resonances, high refractive index dielectric nanoantennnas ha...
Interference of optically induced electric and magnetic modes in high-index all-dielectric nanoparti...
A structure based on a dimer of silicon nanoparticles, presenting directional scattering in the visi...
Directional light scattering by spherical silicon nanoparticles in the visible spectral range is exp...
Controlling the propagation and coupling of light to sub-wavelength antennas is a crucial prerequisi...
Fano resonance arising from the interaction between a broad “bright” mode and a narrow “dark” mode h...
We apply silicon nanoparticles to achieve directional light scattering, directional emission of two-...
Strong and directionally specific forward scattering from optical nanoantennas is of utmost importan...
7 págs.; 7 figs.© 2015 American Chemical Society. A structure based on a dimer of silicon nanopartic...
We introduce a novel hybrid metal-dielectric nanoantenna composed of dielectric (crystalline silicon...
High Refractive Index (HRI) dielectric nanoparticles have been proposed as an alternative to metalli...
11 págs.; 4 figs.; 1 tab.Dimers of nanoparticles are very interesting for several devices due to the...
An optical antenna forms the subwavelength bridge between free space optical radiation and localized...
Recent progress in the study of resonant light confinement in high-index dielectric nanostructures s...
Dielectric nanoparticles offer low optical losses and access to both electric and magnetic Mie reson...
Due to the presence of strong magnetic resonances, high refractive index dielectric nanoantennnas ha...
Interference of optically induced electric and magnetic modes in high-index all-dielectric nanoparti...
A structure based on a dimer of silicon nanoparticles, presenting directional scattering in the visi...
Directional light scattering by spherical silicon nanoparticles in the visible spectral range is exp...
Controlling the propagation and coupling of light to sub-wavelength antennas is a crucial prerequisi...
Fano resonance arising from the interaction between a broad “bright” mode and a narrow “dark” mode h...
We apply silicon nanoparticles to achieve directional light scattering, directional emission of two-...
Strong and directionally specific forward scattering from optical nanoantennas is of utmost importan...
7 págs.; 7 figs.© 2015 American Chemical Society. A structure based on a dimer of silicon nanopartic...
We introduce a novel hybrid metal-dielectric nanoantenna composed of dielectric (crystalline silicon...
High Refractive Index (HRI) dielectric nanoparticles have been proposed as an alternative to metalli...
11 págs.; 4 figs.; 1 tab.Dimers of nanoparticles are very interesting for several devices due to the...
An optical antenna forms the subwavelength bridge between free space optical radiation and localized...
Recent progress in the study of resonant light confinement in high-index dielectric nanostructures s...