Metamaterial absorbers have attracted considerable attention for applications in the terahertz range. In this Letter, we report the design, fabrication, and characterization of a terahertz dual band metamaterial absorber that shows two distinct absorption peaks with high absorption. By manipulating the periodic patterned structures as well as the dielectric layer thickness of the metal–dielectric–metal structure, significantly high absorption can be obtained at specific resonance frequencies. Finite-difference time-domain modeling is used to design the structure of the absorber. The fabricated devices have been characterized using a Fourier transform IR spectrometer. The experimental results show two distinct absorption peaks at 2.7 and 5.2...
A polarization-insensitive and absorption-tunable ultra-broadband terahertz metamaterial absorbers b...
The function of metamaterials targeted for operation at terahertz frequencies was investigated inclu...
In this paper, an ultrathin and polarization-insensitive THz perfect metamaterial absorber (PMA) was...
Metamaterial absorbers have attracted considerable attention for applications in the terahertz range...
Metamaterials (MM), artificial materials engineered to have properties that may not be found in natu...
Metamaterials (MM), artificial materials engineered to have properties that may not be found in natu...
We design, fabricate and characterize dual-band terahertz (THz) metamaterial absorbers with high abs...
We design, fabricate, and characterize dual-band terahertz (THz) metamaterial absorbers with high ab...
In this article, an ultrathin terahertz dual band metamaterial absorber made up of patterned asymmet...
A thin-flexible and polarization-insensitive multiband terahertz metamaterial absorber (MMA) has bee...
We present the simulation, implementation, and measurement of a polarization insensitive resonant me...
Single-layer metallic rings are the effective structure cell which are widely used to design single-...
This paper presents and evaluates a new terahertz metamaterial absorber (MMA) for sensing applicatio...
Metamaterial absorbers consisting of metal, metal-dielectric, or dielectric materials have been real...
Polarization is one of the fundamental properties of electromagnetic waves, conveying valuable infor...
A polarization-insensitive and absorption-tunable ultra-broadband terahertz metamaterial absorbers b...
The function of metamaterials targeted for operation at terahertz frequencies was investigated inclu...
In this paper, an ultrathin and polarization-insensitive THz perfect metamaterial absorber (PMA) was...
Metamaterial absorbers have attracted considerable attention for applications in the terahertz range...
Metamaterials (MM), artificial materials engineered to have properties that may not be found in natu...
Metamaterials (MM), artificial materials engineered to have properties that may not be found in natu...
We design, fabricate and characterize dual-band terahertz (THz) metamaterial absorbers with high abs...
We design, fabricate, and characterize dual-band terahertz (THz) metamaterial absorbers with high ab...
In this article, an ultrathin terahertz dual band metamaterial absorber made up of patterned asymmet...
A thin-flexible and polarization-insensitive multiband terahertz metamaterial absorber (MMA) has bee...
We present the simulation, implementation, and measurement of a polarization insensitive resonant me...
Single-layer metallic rings are the effective structure cell which are widely used to design single-...
This paper presents and evaluates a new terahertz metamaterial absorber (MMA) for sensing applicatio...
Metamaterial absorbers consisting of metal, metal-dielectric, or dielectric materials have been real...
Polarization is one of the fundamental properties of electromagnetic waves, conveying valuable infor...
A polarization-insensitive and absorption-tunable ultra-broadband terahertz metamaterial absorbers b...
The function of metamaterials targeted for operation at terahertz frequencies was investigated inclu...
In this paper, an ultrathin and polarization-insensitive THz perfect metamaterial absorber (PMA) was...