An infrared perfect absorber based on a gold nanowire metamaterial cavities array on a gold ground plane is designed. The metamaterial made of gold nanowires embedded in an alumina host exhibits an effective permittivity with strong anisotropy, which supports cavity resonant modes of both electric dipole and magnetic dipole. The impedance of the cavity modes matches the incident plane wave in free space, leading to nearly perfect light absorption. The incident optical energy is efficiently converted into heat so that the local temperature of the absorber will increase. Results show that the designed absorber is polarization-insensitive and nearly omnidirectional for the incident angle
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
Infrared metasurface perfect light absorbers and thermal emitters play important roles in many promi...
A polarization-independent metamaterial near-perfect absorber is numerically studied in the infrared...
International audienceWe propose a design for an universal absorber, characterized by a resonance fr...
The realization of a semiconductor near-unity absorber in the infrared will provide new capabilities...
Metamaterial thermal emitters based on gold nanowire cavities on a gold substrate are designed to ac...
An infrared (IR) absorber based on the metamaterial structure is proposed theoretically and numerica...
Nanostructured optical coatings with tailored spectral absorption properties are of interest for a w...
We theoretically and numerically designed a perfect metamaterial absorber at microwave frequencies. ...
Abstract: A split-cube-resonator-based metamaterial structure that can act as a polarization- and di...
The visible and infrared wavelengths are the most frequently used electromagnetic (EM) waves in the ...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
The efficient control of optical light at the nanoscale level attracts marvelous applications, inclu...
International audienceThis paper presents the numerical simulation and fabrication of a metasurface ...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
Infrared metasurface perfect light absorbers and thermal emitters play important roles in many promi...
A polarization-independent metamaterial near-perfect absorber is numerically studied in the infrared...
International audienceWe propose a design for an universal absorber, characterized by a resonance fr...
The realization of a semiconductor near-unity absorber in the infrared will provide new capabilities...
Metamaterial thermal emitters based on gold nanowire cavities on a gold substrate are designed to ac...
An infrared (IR) absorber based on the metamaterial structure is proposed theoretically and numerica...
Nanostructured optical coatings with tailored spectral absorption properties are of interest for a w...
We theoretically and numerically designed a perfect metamaterial absorber at microwave frequencies. ...
Abstract: A split-cube-resonator-based metamaterial structure that can act as a polarization- and di...
The visible and infrared wavelengths are the most frequently used electromagnetic (EM) waves in the ...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
The efficient control of optical light at the nanoscale level attracts marvelous applications, inclu...
International audienceThis paper presents the numerical simulation and fabrication of a metasurface ...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
Infrared metasurface perfect light absorbers and thermal emitters play important roles in many promi...