A single-sized dielectric cylinder-based metamaterial is fabricated from TiO2 nanoparticles, using a bottom-up approach. The sub-elements constituting the metalayer are embedded in a nonmagnetic transparent host matrix in the microwave regime and arranged in a square lattice. We demonstrate numerically and experimentally a broadband magnetic activity. The key feature to achieve this performance remains in the high aspect ratio of the metamaterial building blocks. This is a very promising step towards complex electromagnetic functions, involving low-cost metamaterials with simple fabrication
Abstract Thin layers of all-dielectric metamaterials based on TiO2 spherical particle resonators are...
Thin layers of all-dielectric metamaterials based on TiO2 spherical particle resonators are investig...
Thin layers of all-dielectric metamaterials based on TiO2 spherical particle resonators are investig...
A single-sized dielectric cylinder-based metamaterial is fabricated from TiO2 nanoparticles, using a...
A single-sized dielectric cylinder-based metamaterial is fabricated from TiO2 nanoparticles, using a...
A single-sized dielectric cylinder-based metamaterial is fabricated from TiO2 nanoparticles, using a...
International audienceA single-sized dielectric cylinder-based metamaterial is fabricated from TiO2 ...
International audienceA single-sized dielectric cylinder-based metamaterial is fabricated from TiO2 ...
International audienceA single-sized dielectric cylinder-based metamaterial is fabricated from TiO2 ...
We report a strong magnetic activity using an all-dielectric metamaterial based on Mie resonances, d...
We report a strong magnetic activity using an all-dielectric metamaterial based on Mie resonances, d...
We report a strong magnetic activity using an all-dielectric metamaterial based on Mie resonances, d...
We report a strong magnetic activity using an all-dielectric metamaterial based on Mie resonances, d...
Thin layers of all-dielectric metamaterials based on TiO2 spherical particle resonators are investig...
Thin layers of all-dielectric metamaterials based on TiO2 spherical particle resonators are investig...
Abstract Thin layers of all-dielectric metamaterials based on TiO2 spherical particle resonators are...
Thin layers of all-dielectric metamaterials based on TiO2 spherical particle resonators are investig...
Thin layers of all-dielectric metamaterials based on TiO2 spherical particle resonators are investig...
A single-sized dielectric cylinder-based metamaterial is fabricated from TiO2 nanoparticles, using a...
A single-sized dielectric cylinder-based metamaterial is fabricated from TiO2 nanoparticles, using a...
A single-sized dielectric cylinder-based metamaterial is fabricated from TiO2 nanoparticles, using a...
International audienceA single-sized dielectric cylinder-based metamaterial is fabricated from TiO2 ...
International audienceA single-sized dielectric cylinder-based metamaterial is fabricated from TiO2 ...
International audienceA single-sized dielectric cylinder-based metamaterial is fabricated from TiO2 ...
We report a strong magnetic activity using an all-dielectric metamaterial based on Mie resonances, d...
We report a strong magnetic activity using an all-dielectric metamaterial based on Mie resonances, d...
We report a strong magnetic activity using an all-dielectric metamaterial based on Mie resonances, d...
We report a strong magnetic activity using an all-dielectric metamaterial based on Mie resonances, d...
Thin layers of all-dielectric metamaterials based on TiO2 spherical particle resonators are investig...
Thin layers of all-dielectric metamaterials based on TiO2 spherical particle resonators are investig...
Abstract Thin layers of all-dielectric metamaterials based on TiO2 spherical particle resonators are...
Thin layers of all-dielectric metamaterials based on TiO2 spherical particle resonators are investig...
Thin layers of all-dielectric metamaterials based on TiO2 spherical particle resonators are investig...