In this article, an ultrathin terahertz dual band metamaterial absorber made up of patterned asymmetrical double-split rings and a continuous metal layer separated by a thin FR-4 layer is designed. Simulation results show that two almost identical strong absorption peaks appear in the terahertz band. When the incident electric field is perpendicular to the ring gaps located at 11 μm asymmetrically, the absorptivity of 98.6% at 4.48 THz and 98.5% at 4.76 THz can be obtained. The absorption frequency and the absorptivity of the absorber can be modulated by the asymmetric distribution of the gaps. The perfect metamaterial absorber is expected to provide important reference for the design of terahertz modulator, filters, absorbers, and polar...
In this paper, an ultrathin and polarization-insensitive THz perfect metamaterial absorber (PMA) was...
In this paper, an ultrathin and polarization-insensitive THz perfect metamaterial absorber (PMA) was...
Abstract Various kinds of structure designs have been proposed to achieve the multiple-band metamate...
We designed an ultra-thin dual-band metamaterial absorber by adjusting the side strips’ length...
There are numerous applications for microwave absorbers in the L, S, C, X, and Ku bands. Creating a ...
Metamaterial absorbers have attracted considerable attention for applications in the terahertz range...
Metamaterial absorbers have attracted considerable attention for applications in the terahertz range...
A polarization-insensitive and absorption-tunable ultra-broadband terahertz metamaterial absorbers b...
Single-layer metallic rings are the effective structure cell which are widely used to design single-...
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...
Abstract Quad-band terahertz absorber with single-sized metamaterial design formed by a perforated r...
We design, fabricate and characterize dual-band terahertz (THz) metamaterial absorbers with high abs...
In this research work, a symmetrical four-capacitance loaded complementary circular split ring reson...
We design, fabricate, and characterize dual-band terahertz (THz) metamaterial absorbers with high ab...
In this paper, an ultrathin and polarization-insensitive THz perfect metamaterial absorber (PMA) was...
In this paper, an ultrathin and polarization-insensitive THz perfect metamaterial absorber (PMA) was...
Abstract Various kinds of structure designs have been proposed to achieve the multiple-band metamate...
We designed an ultra-thin dual-band metamaterial absorber by adjusting the side strips’ length...
There are numerous applications for microwave absorbers in the L, S, C, X, and Ku bands. Creating a ...
Metamaterial absorbers have attracted considerable attention for applications in the terahertz range...
Metamaterial absorbers have attracted considerable attention for applications in the terahertz range...
A polarization-insensitive and absorption-tunable ultra-broadband terahertz metamaterial absorbers b...
Single-layer metallic rings are the effective structure cell which are widely used to design single-...
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...
Abstract Quad-band terahertz absorber with single-sized metamaterial design formed by a perforated r...
We design, fabricate and characterize dual-band terahertz (THz) metamaterial absorbers with high abs...
In this research work, a symmetrical four-capacitance loaded complementary circular split ring reson...
We design, fabricate, and characterize dual-band terahertz (THz) metamaterial absorbers with high ab...
In this paper, an ultrathin and polarization-insensitive THz perfect metamaterial absorber (PMA) was...
In this paper, an ultrathin and polarization-insensitive THz perfect metamaterial absorber (PMA) was...
Abstract Various kinds of structure designs have been proposed to achieve the multiple-band metamate...