Javascript must be enabled to continue!
Design of a Polarization-Insensitive and Wide-Angle Triple-Band Metamaterial Absorber
View through CrossRef
This paper proposes a tri-band wide-angle polarization-insensitive absorber operating in the C-band and Ku-band, based on the design concept of metal–dielectric–metal. The absorber achieves absorption efficiencies of 99.05%, 99.3%, and 97.9% at 4.23 GHz, 7.403 GHz, and 14.813 GHz, respectively. The first two absorption frequencies are in the C-band, while the third absorption frequency is in the Ku-band, both of which are commonly used in satellite communication. The designed absorber consists of three differently sized regular hexagonal rings. To analyze the interaction mechanism between the electromagnetic wave and the absorber, we applied the theory of impedance matching and equivalent media to analyze the metamaterial properties of the absorber. In addition, the equivalent circuit model of the absorber has been analyzed. We then determined the existence of coupled electromagnetic resonances between the top and bottom surfaces by analyzing the distribution of the electric field, magnetic field, and surface currents on the absorber. By varying the polarization angle and incident angle of the incoming wave, we found that the absorber exhibits polarization insensitivity and wide-angle absorption characteristics. The TE and TM waves maintain more than 90% absorption efficiency up to incident angles of 50° and 60°, respectively. The absorber’s thickness is 1.07 mm, which is 0.0154 times the wavelength corresponding to the lowest resonant frequency (λ0), and the edge length of the subunit’s regular hexagon is 7.5 mm (0.108λ0), making the absorber sub-wavelength in scale while maintaining its compactness. The proposed absorber operates in the C-band and Ku-band, and can be applied in the field of satellite communications, achieving functions such as electromagnetic shielding and stealth.
Title: Design of a Polarization-Insensitive and Wide-Angle Triple-Band Metamaterial Absorber
Description:
This paper proposes a tri-band wide-angle polarization-insensitive absorber operating in the C-band and Ku-band, based on the design concept of metal–dielectric–metal.
The absorber achieves absorption efficiencies of 99.
05%, 99.
3%, and 97.
9% at 4.
23 GHz, 7.
403 GHz, and 14.
813 GHz, respectively.
The first two absorption frequencies are in the C-band, while the third absorption frequency is in the Ku-band, both of which are commonly used in satellite communication.
The designed absorber consists of three differently sized regular hexagonal rings.
To analyze the interaction mechanism between the electromagnetic wave and the absorber, we applied the theory of impedance matching and equivalent media to analyze the metamaterial properties of the absorber.
In addition, the equivalent circuit model of the absorber has been analyzed.
We then determined the existence of coupled electromagnetic resonances between the top and bottom surfaces by analyzing the distribution of the electric field, magnetic field, and surface currents on the absorber.
By varying the polarization angle and incident angle of the incoming wave, we found that the absorber exhibits polarization insensitivity and wide-angle absorption characteristics.
The TE and TM waves maintain more than 90% absorption efficiency up to incident angles of 50° and 60°, respectively.
The absorber’s thickness is 1.
07 mm, which is 0.
0154 times the wavelength corresponding to the lowest resonant frequency (λ0), and the edge length of the subunit’s regular hexagon is 7.
5 mm (0.
108λ0), making the absorber sub-wavelength in scale while maintaining its compactness.
The proposed absorber operates in the C-band and Ku-band, and can be applied in the field of satellite communications, achieving functions such as electromagnetic shielding and stealth.
Related Results
Small phase angle polarization properties of regolith-like materials - the "Mixing Effect"
Small phase angle polarization properties of regolith-like materials - the "Mixing Effect"
<p>Polarization phase curves of asteroids and other small airless bodies are influenced by the compositional and physical properties of their regolith. The mixing of ...
Broadband polarization-sensitive metamaterial absorber based on ladder network construction in the infrared region
Broadband polarization-sensitive metamaterial absorber based on ladder network construction in the infrared region
Plasmonic resonant and metamaterial structures allow for manipulating the polarization properties of electromagnetic waves to achieve polarization beamsplitting. Broadband polariza...
DESAIN DAN SIMULASI METAMATERIAL ABSORBER UNTUK APLIKASI RADAR CROSS SECTION REDUCTION
DESAIN DAN SIMULASI METAMATERIAL ABSORBER UNTUK APLIKASI RADAR CROSS SECTION REDUCTION
Adanya suatu permasalahan kendaraan militer pada kapal maritim yang mengalami pendeteksian dan penyerangan dari pesawat tempur karena kapal tersebut terdeteksi oleh adanya radar da...
Influence of polarization on irradiating LiF crystal by femtosecond laser
Influence of polarization on irradiating LiF crystal by femtosecond laser
The processing morphology of cubic crystal LiF irradiated by femtosecond laser varies with the polarization direction. When the polarization direction is parallel to the crystal or...
A metal-free polarization-insensitive ultrathin and ultra-wideband terahertz absorber with wide incident angle
A metal-free polarization-insensitive ultrathin and ultra-wideband terahertz absorber with wide incident angle
Abstract
In this work, a novel metal-free absorber structure design is proposed with an ultra-thin geometry and ultrawideband response in the lower terahertz region....
Particle swarm optimization of multilayer multi-sized metamaterial absorber for long-wave infrared polarimetric imaging
Particle swarm optimization of multilayer multi-sized metamaterial absorber for long-wave infrared polarimetric imaging
Infrared polarization imaging holds significant promise for enhancing target recognition in both civil and defense applications. The Division of Focal Plane (DoFP) scheme has emerg...
Particle swarm optimization of multilayer multi-sized metamaterial absorber for long-wave infrared polarimetric imaging
Particle swarm optimization of multilayer multi-sized metamaterial absorber for long-wave infrared polarimetric imaging
Infrared polarization imaging holds significant promise for enhancing target recognition in both civil and defense applications. The Division of Focal Plane (DoFP) scheme has emerg...
Design of a Far-Infrared Broadband Metamaterial Absorber with High Absorption and Ultra-Broadband
Design of a Far-Infrared Broadband Metamaterial Absorber with High Absorption and Ultra-Broadband
We designed a metamaterial far-infrared absorber based on an MDM (metal–dielectric–metal) structure. We made a hollow crossed Ti microstructure at the top of the absorber. It is kn...

