High refractive index dielectric (HRID) nanoparticles are a clear alternative to metals in nanophotonic applications due to their low losses and directional scattering properties. It has been demonstrated that HRID dimers are more efficient scattering units than single nanoparticles in redirecting the incident radiation towards the forward direction. This effect was recently reported and is known as the “near zero-backward” scattering condition, attained when nanoparticles forming dimers strongly interact with each other. Here, we analyzed the electromagnetic response of HRID isolated nanoparticles and aggregates when deposited on monolayer and graded-index multilayer dielectric substrates. In particular, we studied the fraction of radiatio...
Nano-textured interfaces between two media of different refractive indices scatter light. The angula...
In this paper, a finite-difference time-domain method is adopted to investigate the light scattering...
The effect of a thin dielectric film on the plasmonic behaviour of metal nanoparticles (MNPs) above ...
High refractive index dielectric (HRID) nanoparticles are a clear alternative to metals in nanophoto...
International audienceLow-losses and directionality effects exhibited by High Refractive Index Diele...
Optically excited geometrical Mie resonances in dielectric nanostructures can be utilised to directi...
Dielectric nanoparticles offer low optical losses and access to both electric and magnetic Mie reson...
ABSTRACT: High-refractive index dielectric nanoparticles may exhibit strong directional forward ligh...
Solar cells are specially engineered semiconductor diodes that have the ability to convert solar ene...
The intense light scattered from metal nanoparticles sustaining surface plasmons makes them attracti...
© 2015 Optical Society of America. Broadband solar cell antireflection coatings made of nanocones ar...
Emerging high-index all-dielectric nanostructures, capable of manipulating light on the subwavelengt...
High-refractive index dielectric nanoparticles may exhibit strong directional forward light scatteri...
High Refractive Index (HRI) dielectric nanoparticles have been proposed as an alternative to metalli...
We investigate the scattering properties of novel kinds of nano-textured substrates, fabricated in a...
Nano-textured interfaces between two media of different refractive indices scatter light. The angula...
In this paper, a finite-difference time-domain method is adopted to investigate the light scattering...
The effect of a thin dielectric film on the plasmonic behaviour of metal nanoparticles (MNPs) above ...
High refractive index dielectric (HRID) nanoparticles are a clear alternative to metals in nanophoto...
International audienceLow-losses and directionality effects exhibited by High Refractive Index Diele...
Optically excited geometrical Mie resonances in dielectric nanostructures can be utilised to directi...
Dielectric nanoparticles offer low optical losses and access to both electric and magnetic Mie reson...
ABSTRACT: High-refractive index dielectric nanoparticles may exhibit strong directional forward ligh...
Solar cells are specially engineered semiconductor diodes that have the ability to convert solar ene...
The intense light scattered from metal nanoparticles sustaining surface plasmons makes them attracti...
© 2015 Optical Society of America. Broadband solar cell antireflection coatings made of nanocones ar...
Emerging high-index all-dielectric nanostructures, capable of manipulating light on the subwavelengt...
High-refractive index dielectric nanoparticles may exhibit strong directional forward light scatteri...
High Refractive Index (HRI) dielectric nanoparticles have been proposed as an alternative to metalli...
We investigate the scattering properties of novel kinds of nano-textured substrates, fabricated in a...
Nano-textured interfaces between two media of different refractive indices scatter light. The angula...
In this paper, a finite-difference time-domain method is adopted to investigate the light scattering...
The effect of a thin dielectric film on the plasmonic behaviour of metal nanoparticles (MNPs) above ...