A new metamaterial absorber is designed and characterized numerically for the harvesting of solar energy. The design is composed of three layers in which the interaction among them gives rise to the plasmonic resonances. The main operation frequency range of the proposed structure is chosen to be the visible regime. However, the design is also analyzed for the infrared and ultraviolet regimes. In order to characterize the absorber, some parametric studies with respect to the dimensions of the structure are carried out. According to the results, it is found that the proposed metamaterial absorber has 98.2 % absorption capability at 445.85 THz and 99.4 % absorption capability between 624 and 658.3 THz. Moreover, the polarization dependency of...
ABSTRACT: We demonstrate a broadband, polarization independent, omnidirectional absorber based on a ...
A new broadband absorber is investigated for the entire frequency domain of solar light (infrared, v...
Developing a perfect absorber based on metamaterials (MTMs) is a promising technique towards improvi...
In this study, a novel metamaterial absorber (MA) is designed and numerically demonstrated for solar...
A new metamaterial absorber (MA) is investigated and shown numerically for solar energy harvesting f...
A new metamaterial absorber (MA) having distinct properties than those given in the literature is in...
A new perfect metamaterial absorber (PMA) with high fractional bandwidth (FBW) is examined and verif...
A multi-band, ultrathin, polarization-insensitive, near-perfect metamaterial absorber (PMA) has been...
This paper proposes a metamaterial absorber design for solar energy harvesting using a simplified an...
This paper proposes a metamaterial absorber design for solar energy harvesting using a simplified an...
A metamaterial absorber that effectively harvests solar energy is being proposed in this paper using...
A novel broad-band polarization-independent with wide-angle metamaterial absorber(MA) is investigate...
A dual band metamaterial absorber is designed for photovoltaic applications. The novelty of the desi...
Solar spectrum is supposed to be a key source of renewable energy in the form of electromagnetic (EM...
We design, characterize, and analyze a new kind of metamaterial (MTM) absorber (MA) in different fre...
ABSTRACT: We demonstrate a broadband, polarization independent, omnidirectional absorber based on a ...
A new broadband absorber is investigated for the entire frequency domain of solar light (infrared, v...
Developing a perfect absorber based on metamaterials (MTMs) is a promising technique towards improvi...
In this study, a novel metamaterial absorber (MA) is designed and numerically demonstrated for solar...
A new metamaterial absorber (MA) is investigated and shown numerically for solar energy harvesting f...
A new metamaterial absorber (MA) having distinct properties than those given in the literature is in...
A new perfect metamaterial absorber (PMA) with high fractional bandwidth (FBW) is examined and verif...
A multi-band, ultrathin, polarization-insensitive, near-perfect metamaterial absorber (PMA) has been...
This paper proposes a metamaterial absorber design for solar energy harvesting using a simplified an...
This paper proposes a metamaterial absorber design for solar energy harvesting using a simplified an...
A metamaterial absorber that effectively harvests solar energy is being proposed in this paper using...
A novel broad-band polarization-independent with wide-angle metamaterial absorber(MA) is investigate...
A dual band metamaterial absorber is designed for photovoltaic applications. The novelty of the desi...
Solar spectrum is supposed to be a key source of renewable energy in the form of electromagnetic (EM...
We design, characterize, and analyze a new kind of metamaterial (MTM) absorber (MA) in different fre...
ABSTRACT: We demonstrate a broadband, polarization independent, omnidirectional absorber based on a ...
A new broadband absorber is investigated for the entire frequency domain of solar light (infrared, v...
Developing a perfect absorber based on metamaterials (MTMs) is a promising technique towards improvi...