An infrared (IR) absorber based on the metamaterial structure is proposed theoretically and numerically. The near-unity absorption can be achieved at a certain wavelength by optimizing geometrical parameters of the structure. Moreover, we can switch a single-band absorber to dual-band absorber by decreasing the thickness of top metallic layer which is perforated by an air-filled ribbon. At the same time, we confirm that the mechanism of this two absorption bands is completely different. The simultaneous effects of the magnetic resonance and the cavity resonance occur at our proposed structure. Besides according to the control of polarization direction, the absorption peaks occur at the two constant wavelengths, and the superposed value of t...
Perfect absorption can be achieved by using the extraordinary properties of metamaterials. The imped...
We demonstrate a dual-band, polarization-insensitive, ultrathin and flexible metamaterial absorber (...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
This paper proposes a perfect metamaterial absorber based on a dielectric−dielectric−metal structure...
Magnetic resonance is considered to be a necessary condition for metamaterial perfect absorbers, and...
Ultra sensitive metamaterial-based absorber (MA) which acts as a strong dual-band resonator is desig...
We propose a dual-band metamaterial perfect absorber at microwave frequencies. Using a planar metama...
In this paper, we present two metamaterial absorbers (MMA) at mid-infrared using multi-resonant stru...
A polarization-independent metamaterial near-perfect absorber is numerically studied in the infrared...
Polarization and incident angle independent metamaterial-based absorber (MA) which acts as a strong ...
Ultra-narrowband absorber can be applied in many applications. We propose a mid-infrared ultra-narro...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
We present the design, fabrication, and physical interpretation of an infrared dual-band metamateria...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
Infrared absorbers are essential structures in the design of thermal emitters and thermal infrared i...
Perfect absorption can be achieved by using the extraordinary properties of metamaterials. The imped...
We demonstrate a dual-band, polarization-insensitive, ultrathin and flexible metamaterial absorber (...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
This paper proposes a perfect metamaterial absorber based on a dielectric−dielectric−metal structure...
Magnetic resonance is considered to be a necessary condition for metamaterial perfect absorbers, and...
Ultra sensitive metamaterial-based absorber (MA) which acts as a strong dual-band resonator is desig...
We propose a dual-band metamaterial perfect absorber at microwave frequencies. Using a planar metama...
In this paper, we present two metamaterial absorbers (MMA) at mid-infrared using multi-resonant stru...
A polarization-independent metamaterial near-perfect absorber is numerically studied in the infrared...
Polarization and incident angle independent metamaterial-based absorber (MA) which acts as a strong ...
Ultra-narrowband absorber can be applied in many applications. We propose a mid-infrared ultra-narro...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
We present the design, fabrication, and physical interpretation of an infrared dual-band metamateria...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...
Infrared absorbers are essential structures in the design of thermal emitters and thermal infrared i...
Perfect absorption can be achieved by using the extraordinary properties of metamaterials. The imped...
We demonstrate a dual-band, polarization-insensitive, ultrathin and flexible metamaterial absorber (...
Infrared observation is a crucial tool in the study of astronomical celestial bodies. Metamaterials ...