International audienceMetals in the plasmonic metamaterial absorbers for photovoltaics constitute undesired resistive heating. However, tailoring the geometric skin depth of metals can minimize resistive losses while maximizing the optical absorbance in the active semiconductors of the photovoltaic device. Considering experimental permittivity data for InxGa1-xN, absorbance in the semiconductor layers of the photovoltaic device can reach above 90%. The results here also provides guidance to compare the performance of different semiconductor materials. This skin depth engineering approach can also be applied to other optoelectronic devices, where optimizing the device performance demands minimizing resistive losses and power consumption, suc...
We propose a metamaterial based absorber design that operates at the infrared regime. The absorption...
Selective solar absorbers generally have limited effectiveness in unconcentrated sunlight, because o...
Maximum absorption of light using plasmonic perfect absorbers (PPAs) is highly desired in the field ...
Metals in the plasmonic metamaterial absorbers for photovoltaics constitute undesired resistive heat...
Using metamaterial absorbers, we have shown that metallic layers in the absorbers do not necessarily...
Plasmonic is an emerging technology used to increase the performance of thin-film devices via light-...
ABSTRACT: We demonstrate a broadband, polarization independent, omnidirectional absorber based on a ...
Cataloged from PDF version of article.We propose and demonstrate a design concept of volumetric plas...
abstract: A film-coupled metamaterial structure is numerically investigated for enhancing the light ...
abstract: The objective of this dissertation is to study the use of metamaterials as narrow-band and...
peer-reviewedAchieving the broadband response of metamaterial absorbers has been quite challenging d...
The recent rise of metamaterials opens new opportunities for absorbers due to their designed electro...
For ultrathin (similar to 10 nm) nanocomposite films of plasmonic materials and semiconductors, the ...
Although different materials and designs have been tried in search of the ideal as well as ultrawide...
The development of highly efficient solar collectors requires modulating the light interactions with...
We propose a metamaterial based absorber design that operates at the infrared regime. The absorption...
Selective solar absorbers generally have limited effectiveness in unconcentrated sunlight, because o...
Maximum absorption of light using plasmonic perfect absorbers (PPAs) is highly desired in the field ...
Metals in the plasmonic metamaterial absorbers for photovoltaics constitute undesired resistive heat...
Using metamaterial absorbers, we have shown that metallic layers in the absorbers do not necessarily...
Plasmonic is an emerging technology used to increase the performance of thin-film devices via light-...
ABSTRACT: We demonstrate a broadband, polarization independent, omnidirectional absorber based on a ...
Cataloged from PDF version of article.We propose and demonstrate a design concept of volumetric plas...
abstract: A film-coupled metamaterial structure is numerically investigated for enhancing the light ...
abstract: The objective of this dissertation is to study the use of metamaterials as narrow-band and...
peer-reviewedAchieving the broadband response of metamaterial absorbers has been quite challenging d...
The recent rise of metamaterials opens new opportunities for absorbers due to their designed electro...
For ultrathin (similar to 10 nm) nanocomposite films of plasmonic materials and semiconductors, the ...
Although different materials and designs have been tried in search of the ideal as well as ultrawide...
The development of highly efficient solar collectors requires modulating the light interactions with...
We propose a metamaterial based absorber design that operates at the infrared regime. The absorption...
Selective solar absorbers generally have limited effectiveness in unconcentrated sunlight, because o...
Maximum absorption of light using plasmonic perfect absorbers (PPAs) is highly desired in the field ...