Plasmonic metamaterial absorbers are particularly important in different applications such as photodetectors, microbolometers and solar cells. In this paper, we propose a tungsten boride (WB, a refractory ceramic) based broadband metamaterial absorber whose optical properties is numerically analyzed and experimentally characterized. We have also analyzed the damage characteristics of this absorber using a femtosecond laser and compared with an ordinary Au metamaterial absorber. We observe that WB has almost the double absorption bandwidth with absorption more than 90% over the spectral range of 950 to 1400 nm when compared with the Au counterpart. Furthermore, we show that Au metamaterial is damaged at the power of around 36.4 mW whereas WB...
A full-spectrum near-unity solar absorber has attracted substantial attention in recent years, and e...
Using metamaterial absorbers, we have shown that metallic layers in the absorbers do not necessarily...
A subwavelength water metamaterial is proposed and analyzed for ultra-broadband perfect absorption a...
Metal-based perfect absorbers that use metals such as aluminum (Al) can have their optical propertie...
Plasmonic is an emerging technology used to increase the performance of thin-film devices via light-...
Utilizing solar energy requires perfect absorption of light by the photovoltaic cells, particularly ...
The recent rise of metamaterials opens new opportunities for absorbers due to their designed electro...
peer-reviewedAchieving the broadband response of metamaterial absorbers has been quite challenging d...
Solar energy is an inexhaustible clean energy. However, how to improve the absorption efficiency in ...
ABSTRACT: We demonstrate a broadband, polarization independent, omnidirectional absorber based on a ...
In this study, a novel metamaterial absorber (MA) is designed and numerically demonstrated for solar...
We present an ultra broadband thin-film infrared absorber made of saw-toothed anisotropic metamateri...
We show theoretically that an array of tungsten/germanium anisotropic nano-cones placed on top of a ...
An oblique angle and polarization insensitive metamaterial absorber (MA) are highly desired for the ...
A new broadband absorber is investigated for the entire frequency domain of solar light (infrared, v...
A full-spectrum near-unity solar absorber has attracted substantial attention in recent years, and e...
Using metamaterial absorbers, we have shown that metallic layers in the absorbers do not necessarily...
A subwavelength water metamaterial is proposed and analyzed for ultra-broadband perfect absorption a...
Metal-based perfect absorbers that use metals such as aluminum (Al) can have their optical propertie...
Plasmonic is an emerging technology used to increase the performance of thin-film devices via light-...
Utilizing solar energy requires perfect absorption of light by the photovoltaic cells, particularly ...
The recent rise of metamaterials opens new opportunities for absorbers due to their designed electro...
peer-reviewedAchieving the broadband response of metamaterial absorbers has been quite challenging d...
Solar energy is an inexhaustible clean energy. However, how to improve the absorption efficiency in ...
ABSTRACT: We demonstrate a broadband, polarization independent, omnidirectional absorber based on a ...
In this study, a novel metamaterial absorber (MA) is designed and numerically demonstrated for solar...
We present an ultra broadband thin-film infrared absorber made of saw-toothed anisotropic metamateri...
We show theoretically that an array of tungsten/germanium anisotropic nano-cones placed on top of a ...
An oblique angle and polarization insensitive metamaterial absorber (MA) are highly desired for the ...
A new broadband absorber is investigated for the entire frequency domain of solar light (infrared, v...
A full-spectrum near-unity solar absorber has attracted substantial attention in recent years, and e...
Using metamaterial absorbers, we have shown that metallic layers in the absorbers do not necessarily...
A subwavelength water metamaterial is proposed and analyzed for ultra-broadband perfect absorption a...