A novel metamaterial, which exhibits a wideband double negative behavior in X-band, is proposed, designed, and investigated in this paper. The metamaterial is composed of modified S-shaped split-ring resonators (S-SRR). The periodic structure is designed and simulated using CST MWs. Next, the experiments are carried out, and it is shown that the simulation and the experimental results agree well and the designed structure has a wide bandwidth in X-band. An absorber application of this metamaterial is also provided, and the structure can be used as an absorber with absorption rate of over 80% for the polarization angles between 0 degrees and 40 degrees.Publisher's Versio
A novel Metamaterial Absorber (MA) based on rectangular shaped resonators with slot has been propose...
A novel microwave metamaterial absorber design is introduced along with its manufacturing and charac...
A metamaterial electromagnetic wave absorber consisting of a big circular ring patch with four small...
In this article, we present a metamaterial absorber (MMA), and more specifically a metasurface based...
A dual-band perfect metamaterial absorber based on closed ring resonator structures (CRRs) with pola...
42-48A dual-band perfect meta-material absorber based on closed ring resonator structures (CRRs) wit...
The metamaterial absorber’s new conception and simulation are presented in this paper. Two peaks of ...
The metamaterial absorber’s new conception and simulation are presented in this paper. Two peaks of ...
A new design and analysis of a wide-band double-negative metamaterial, considering a frequency range...
A new development of metamaterial applications in radar absorbers for X band is introduced. Two modi...
A new development of metamaterial applications in radar absorbers for X band is introduced. Two modi...
A new development of metamaterial applications in radar absorbers for X band is introduced. Two modi...
A new development of metamaterial applications in radar absorbers for X band is introduced. Two modi...
In this paper, the polarization independent wide angle ISM-band metamaterial absorber structure has...
A novel Metamaterial Absorber (MA) based on rectangular shaped resonators with slot has been propose...
A novel Metamaterial Absorber (MA) based on rectangular shaped resonators with slot has been propose...
A novel microwave metamaterial absorber design is introduced along with its manufacturing and charac...
A metamaterial electromagnetic wave absorber consisting of a big circular ring patch with four small...
In this article, we present a metamaterial absorber (MMA), and more specifically a metasurface based...
A dual-band perfect metamaterial absorber based on closed ring resonator structures (CRRs) with pola...
42-48A dual-band perfect meta-material absorber based on closed ring resonator structures (CRRs) wit...
The metamaterial absorber’s new conception and simulation are presented in this paper. Two peaks of ...
The metamaterial absorber’s new conception and simulation are presented in this paper. Two peaks of ...
A new design and analysis of a wide-band double-negative metamaterial, considering a frequency range...
A new development of metamaterial applications in radar absorbers for X band is introduced. Two modi...
A new development of metamaterial applications in radar absorbers for X band is introduced. Two modi...
A new development of metamaterial applications in radar absorbers for X band is introduced. Two modi...
A new development of metamaterial applications in radar absorbers for X band is introduced. Two modi...
In this paper, the polarization independent wide angle ISM-band metamaterial absorber structure has...
A novel Metamaterial Absorber (MA) based on rectangular shaped resonators with slot has been propose...
A novel Metamaterial Absorber (MA) based on rectangular shaped resonators with slot has been propose...
A novel microwave metamaterial absorber design is introduced along with its manufacturing and charac...
A metamaterial electromagnetic wave absorber consisting of a big circular ring patch with four small...