A dual-band metamaterial absorber (MA) based on triangular resonators is designed and investigated in this paper. It is composed of a two-dimensional periodic metal-dielectric-metal sandwiches array on a dielectric substrate. The simulation results clearly show that this absorber has two absorption peaks at 14.9 and 18.9 GHz, respectively, and experiments are conducted to verify the proposed designs effectively. For each polarization, the dual-band absorber is insensitive to the incident angle (up to 60°) and the absorption peaks remain high for both transverse electric (TE) and transverse magnetic (TM) radiation. To study the physical mechanism of power loss, the current distribution at the dual absorption peaks is given. The MA proposed i...
A five-band metamaterial absorber (MMA) is presented. The proposed absorber consists of a three-laye...
A metamaterial absorber that effectively harvests solar energy is being proposed in this paper using...
We present the design, simulation, and measurement of a polarization-independent and angle-insensiti...
Polarization and incident angle independent metamaterial-based absorber (MA) which acts as a strong ...
Artificial electromagnetic metamaterial produces exotic resonance, extra ordinary characteristics no...
A polarization insensitive, wide angle low profile metamaterial absorber with dual-band absorption c...
Abstract—We present the design, characterization, and experimental verification of a dual-band metam...
In this paper, We present a design and simulate of a dual-band and polarization insensitive for meta...
We investigated sandwich structure of the conventional absorber metamaterials to expand the study on...
We numerically and experimentally investigated dual-band absorption of sandwich-structure metamateri...
This paper presents the design of double layer polarization insensitive metamaterial absorber with d...
A dual-band microwave metamaterial absorber with single-peak regulation and wide-angle absorption ha...
A dual-band microwave metamaterial absorber with single-peak regulation and wide-angle absorption ha...
This paper presents the analysis of dual-band metamaterial perfect absorber (MPA) with nearly polari...
This paper presents the design of dual band polarization insensitive metamaterial absorber at 9 GHz ...
A five-band metamaterial absorber (MMA) is presented. The proposed absorber consists of a three-laye...
A metamaterial absorber that effectively harvests solar energy is being proposed in this paper using...
We present the design, simulation, and measurement of a polarization-independent and angle-insensiti...
Polarization and incident angle independent metamaterial-based absorber (MA) which acts as a strong ...
Artificial electromagnetic metamaterial produces exotic resonance, extra ordinary characteristics no...
A polarization insensitive, wide angle low profile metamaterial absorber with dual-band absorption c...
Abstract—We present the design, characterization, and experimental verification of a dual-band metam...
In this paper, We present a design and simulate of a dual-band and polarization insensitive for meta...
We investigated sandwich structure of the conventional absorber metamaterials to expand the study on...
We numerically and experimentally investigated dual-band absorption of sandwich-structure metamateri...
This paper presents the design of double layer polarization insensitive metamaterial absorber with d...
A dual-band microwave metamaterial absorber with single-peak regulation and wide-angle absorption ha...
A dual-band microwave metamaterial absorber with single-peak regulation and wide-angle absorption ha...
This paper presents the analysis of dual-band metamaterial perfect absorber (MPA) with nearly polari...
This paper presents the design of dual band polarization insensitive metamaterial absorber at 9 GHz ...
A five-band metamaterial absorber (MMA) is presented. The proposed absorber consists of a three-laye...
A metamaterial absorber that effectively harvests solar energy is being proposed in this paper using...
We present the design, simulation, and measurement of a polarization-independent and angle-insensiti...