Metal nanoparticles and diffractive nanostructures are widely studied for enhancing light trapping efficiency in thin-film solar cells. Both have achieved high performance enhancements, but there are very few direct comparisons between the two. Also, it is difficult to accurately determine the parasitic absorption of metal nanoparticles. Here, we assess the light trapping efficiencies of both approaches in an identical absorber configuration. We use a 240 nm thick amorphous silicon slab as the absorber layer and either a quasi-random supercell diffractive nanostructure or a layer of self-assembled metal nanoparticles for light trapping. Both the plasmonic and diffractive structures strongly enhance the absorption in the red/nearinfrar...
We find that three mechanisms lead to the absorption enhancements of light in a thin-film amorphous ...
The behaviour of plasmonic metal nanoparticles (MNPs) placed in contact with a thin dielectric film ...
Optically driven localised surface plasmons can be excited on sub-wavelength metal particles, which ...
Metal nanoparticles and diffractive nanostructures are widely studied for enhancing light trapping ...
Metal nanoparticles and diffractive nanostructures are widely studied for enhancing light trapping e...
Metal nanoparticles and diffractive nanostructures are widely studied for enhancing light trapping e...
Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of ...
Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of ...
Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of ...
Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of ...
Photovoltaics are a key technology which can meet rising global demand for clean energy. However, si...
Plasmonic nanostructures have been widely studied for enhancing the absorption of light in different...
Plasmonic nanostructures have been widely studied for enhancing the absorption of light in different...
Plasmonic light trapping in thin film solar cells is investigated using full-wave electromagnetic si...
ABSTRACT: Advanced light management in thin-film solar cells is becoming increasingly important to r...
We find that three mechanisms lead to the absorption enhancements of light in a thin-film amorphous ...
The behaviour of plasmonic metal nanoparticles (MNPs) placed in contact with a thin dielectric film ...
Optically driven localised surface plasmons can be excited on sub-wavelength metal particles, which ...
Metal nanoparticles and diffractive nanostructures are widely studied for enhancing light trapping ...
Metal nanoparticles and diffractive nanostructures are widely studied for enhancing light trapping e...
Metal nanoparticles and diffractive nanostructures are widely studied for enhancing light trapping e...
Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of ...
Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of ...
Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of ...
Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of ...
Photovoltaics are a key technology which can meet rising global demand for clean energy. However, si...
Plasmonic nanostructures have been widely studied for enhancing the absorption of light in different...
Plasmonic nanostructures have been widely studied for enhancing the absorption of light in different...
Plasmonic light trapping in thin film solar cells is investigated using full-wave electromagnetic si...
ABSTRACT: Advanced light management in thin-film solar cells is becoming increasingly important to r...
We find that three mechanisms lead to the absorption enhancements of light in a thin-film amorphous ...
The behaviour of plasmonic metal nanoparticles (MNPs) placed in contact with a thin dielectric film ...
Optically driven localised surface plasmons can be excited on sub-wavelength metal particles, which ...