Polar materials, i.e. those materials where it is possible to excite the collective oscillations of the lattice ions, along with derived phononic structures offer the possibility of manipulating and amplificating IR emissivity by the excitation of such surface modes. Since the oscillation frequencies of the crystalline lattice ions are typically lower, compared to the plasma frequencies, they fall in the infrared wavelength range. The asymmetric spectral emissivity in the infrared range of a metamateriale composed by subwavelength oriented air inclusions into a polar matrix was investigated. We show hoe the longitudinal phononic resonance can be excited and tuned as function of the inclusions content and orientation, within the application ...
The need to control thermal emissions in devices, such as infrared (IR) sensors, has a number of def...
Highly doped semiconductors are ideal materials to realize plasmonic and metamaterial based systems ...
Spectral and directional control of thermal emission holds substantial importance in applications wh...
We numerically investigated the asymmetric spectral emissivity in the mid- to long-infrared range of...
We investigated a metamaterial composed by silicon carbide (SiC) subwavelength oriented wires, onto ...
In recent years, much effort has been expended upon managing and tuning the radiative properties of ...
We numerically investigated the peculiar spectral properties in the mid- to long-infrared range of a...
The optical properties of matter are determined by the coupling of the incident electromagnetic radi...
An infrared artificial thermochromic material composed of a metamaterial emitter and a bimaterial mi...
Surface phonon-polaritons in thin layers of high-index dielectric structures are emerging as promisi...
A thin metamaterial slab comprising a dielectric spacer sandwiched between a metallic grating and a ...
Abstract: A split-cube-resonator-based metamaterial structure that can act as a polarization- and di...
We design an ultra-thin infrared metamaterial thermal radiator which has nearly isotropic emission p...
Frequency-Selective Surfaces (FSS) type metasurfaces consist of periodic arrays of antenna elements....
International audienceWe propose two distinctive designs of metamaterials demonstrating filtering fu...
The need to control thermal emissions in devices, such as infrared (IR) sensors, has a number of def...
Highly doped semiconductors are ideal materials to realize plasmonic and metamaterial based systems ...
Spectral and directional control of thermal emission holds substantial importance in applications wh...
We numerically investigated the asymmetric spectral emissivity in the mid- to long-infrared range of...
We investigated a metamaterial composed by silicon carbide (SiC) subwavelength oriented wires, onto ...
In recent years, much effort has been expended upon managing and tuning the radiative properties of ...
We numerically investigated the peculiar spectral properties in the mid- to long-infrared range of a...
The optical properties of matter are determined by the coupling of the incident electromagnetic radi...
An infrared artificial thermochromic material composed of a metamaterial emitter and a bimaterial mi...
Surface phonon-polaritons in thin layers of high-index dielectric structures are emerging as promisi...
A thin metamaterial slab comprising a dielectric spacer sandwiched between a metallic grating and a ...
Abstract: A split-cube-resonator-based metamaterial structure that can act as a polarization- and di...
We design an ultra-thin infrared metamaterial thermal radiator which has nearly isotropic emission p...
Frequency-Selective Surfaces (FSS) type metasurfaces consist of periodic arrays of antenna elements....
International audienceWe propose two distinctive designs of metamaterials demonstrating filtering fu...
The need to control thermal emissions in devices, such as infrared (IR) sensors, has a number of def...
Highly doped semiconductors are ideal materials to realize plasmonic and metamaterial based systems ...
Spectral and directional control of thermal emission holds substantial importance in applications wh...