Abstract Various kinds of structure designs have been proposed to achieve the multiple-band metamaterial absorbers. However, the discrete distance of adjacent frequencies of multiple absorbers is considerably large, which will inevitably overlook a large amount of information hidden in the off-resonance absorption areas. Herein, a narrow discrete distance of dual-band terahertz absorber based on two pairs of an Au strip/dielectric layer backed by Au film is designed. Two nearly 100% absorptivities of resonance peaks having the discrete distance of only 0.30 THz are realized. The relative discrete distance of the device is 13.33%, and this value can be adjusted via the length change of an Au strip. Furthermore, we present two narrow discrete...
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...
This paper presents a simple metamaterial design to achieve the triple-band near-perfect absorption ...
We designed an ultra-thin dual-band metamaterial absorber by adjusting the side strips’ length...
Metamaterial absorbers have attracted considerable attention for applications in the terahertz range...
Abstract Quad-band terahertz absorber with single-sized metamaterial design formed by a perforated r...
In this article, an ultrathin terahertz dual band metamaterial absorber made up of patterned asymmet...
Single-layer metallic rings are the effective structure cell which are widely used to design single-...
The realization of broadband absorption in the terahertz regime is of significant interest in high-s...
Metamaterial absorbers have attracted considerable attention for applications in the terahertz range...
Multiple-frequency-band metamaterial absorbers possess great application prospects, which are usuall...
A tunable triple-band absorber based on bulk-Dirac-semimetal (BDS) metasurface is proposed in the te...
Sabah, Cumali/0000-0002-4346-3537; Altan, Hakan/0000-0002-2456-8827WOS: 000435923500002In this work,...
This paper presents a study of a novel absorber structure based on two-dielectric-layers, two perfec...
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...
This paper presents a simple metamaterial design to achieve the triple-band near-perfect absorption ...
We designed an ultra-thin dual-band metamaterial absorber by adjusting the side strips’ length...
Metamaterial absorbers have attracted considerable attention for applications in the terahertz range...
Abstract Quad-band terahertz absorber with single-sized metamaterial design formed by a perforated r...
In this article, an ultrathin terahertz dual band metamaterial absorber made up of patterned asymmet...
Single-layer metallic rings are the effective structure cell which are widely used to design single-...
The realization of broadband absorption in the terahertz regime is of significant interest in high-s...
Metamaterial absorbers have attracted considerable attention for applications in the terahertz range...
Multiple-frequency-band metamaterial absorbers possess great application prospects, which are usuall...
A tunable triple-band absorber based on bulk-Dirac-semimetal (BDS) metasurface is proposed in the te...
Sabah, Cumali/0000-0002-4346-3537; Altan, Hakan/0000-0002-2456-8827WOS: 000435923500002In this work,...
This paper presents a study of a novel absorber structure based on two-dielectric-layers, two perfec...
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...