We report a strong magnetic activity using an all-dielectric metamaterial based on Mie resonances, designed to work at millimeter wavelengths over the 30-70 GHz band. A good agreement was achieved between numerical simulations and experiment in the case of one meta-layer based on TiO2-disks, manufactured using a simple bottom-up approach. We also demonstrate through numerical simulations a negative refractive index within the same investigated metamaterial made of high dielectric permittivity single-size pellets. Choosing the suitable aspect-ratio of the metamaterial building blocks, a broadband magnetic response and a left-handed behavior are simultaneously obtained. This is a promising step towards innovative and complex electromagnetic f...
A single-sized dielectric cylinder-based metamaterial is fabricated from TiO2 nanoparticles, using a...
Rigid metamaterials were prepared by embedding TiO2 microspheres into polyethylene. These structures...
Abstract Thin layers of all-dielectric metamaterials based on TiO2 spherical particle resonators are...
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...
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 have designed and experimentally demonstrated a left-handed metamaterial working at microwave fre...
We have designed and experimentally demonstrated a left-handed metamaterial working at microwave fre...
International audienceA single-sized dielectric cylinder-based metamaterial is fabricated from TiO2 ...
We have designed and experimentally demonstrated a left-handed metamaterial working at microwave fre...
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...
A single-sized dielectric cylinder-based metamaterial is fabricated from TiO2 nanoparticles, using a...
Rigid metamaterials were prepared by embedding TiO2 microspheres into polyethylene. These structures...
Abstract Thin layers of all-dielectric metamaterials based on TiO2 spherical particle resonators are...
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...
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 have designed and experimentally demonstrated a left-handed metamaterial working at microwave fre...
We have designed and experimentally demonstrated a left-handed metamaterial working at microwave fre...
International audienceA single-sized dielectric cylinder-based metamaterial is fabricated from TiO2 ...
We have designed and experimentally demonstrated a left-handed metamaterial working at microwave fre...
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...
A single-sized dielectric cylinder-based metamaterial is fabricated from TiO2 nanoparticles, using a...
Rigid metamaterials were prepared by embedding TiO2 microspheres into polyethylene. These structures...
Abstract Thin layers of all-dielectric metamaterials based on TiO2 spherical particle resonators are...