We investigate the influence of nanoparticle height on light trapping in thin-film solar cells covered with metal nanoparticles. We show that in taller nanoparticles the scattering cross-section is enhanced by resonant excitation of plasmonic standing waves. Tall nanoparticles have higher coupling efficiency when placed on the illuminated surface of the cell than on the rear of the cell due to their forward scattering nature. One of the major factors affecting the coupling efficiency of these particles is the phase shift of surface plasmon polaritons propagating along the nanoparticle due to reflection from the Ag/Si or Ag/air interface. The high scattering cross-sections of tall nanoparticles on the illuminated surface of the cell could be...
Global warming is a potential threat to life on earth and to human society. It is by much evidence l...
In this work, we investigate the effects produced on the light absorption and scattering by silver n...
Plasmonic metal nanoparticles supporting localized surface plasmon resonances have attracted a great...
We investigate the influence of nanoparticle height on light trapping in thin-film solar cells cover...
Optically driven localised surface plasmons can be excited on sub-wavelength metal particles, which ...
ABSTRACT: Advanced light management in thin-film solar cells is becoming increasingly important to r...
Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of ...
Ag nanoparticle arrays, located on the front or rear surface of a Si solar cell, can provide effecti...
Photovoltaics is a sustainable and environmentally clean source of energy that has the potential to ...
The effect of a thin dielectric film on the plasmonic behaviour of metal nanoparticles (MNPs) above ...
We provide a new physical interpretation of scattering from plasmonic nanoparticles on high-index su...
Effective light management is imperative in maintaining high efficiencies as photovoltaic devices be...
Photovoltaics are a key technology which can meet rising global demand for clean energy. However, si...
To over come the lower absorption of solar radiation in thin film solar cell a novel technique of co...
We present a design of implementing plasmonic nanoparticles made from silver onto the surface of amo...
Global warming is a potential threat to life on earth and to human society. It is by much evidence l...
In this work, we investigate the effects produced on the light absorption and scattering by silver n...
Plasmonic metal nanoparticles supporting localized surface plasmon resonances have attracted a great...
We investigate the influence of nanoparticle height on light trapping in thin-film solar cells cover...
Optically driven localised surface plasmons can be excited on sub-wavelength metal particles, which ...
ABSTRACT: Advanced light management in thin-film solar cells is becoming increasingly important to r...
Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of ...
Ag nanoparticle arrays, located on the front or rear surface of a Si solar cell, can provide effecti...
Photovoltaics is a sustainable and environmentally clean source of energy that has the potential to ...
The effect of a thin dielectric film on the plasmonic behaviour of metal nanoparticles (MNPs) above ...
We provide a new physical interpretation of scattering from plasmonic nanoparticles on high-index su...
Effective light management is imperative in maintaining high efficiencies as photovoltaic devices be...
Photovoltaics are a key technology which can meet rising global demand for clean energy. However, si...
To over come the lower absorption of solar radiation in thin film solar cell a novel technique of co...
We present a design of implementing plasmonic nanoparticles made from silver onto the surface of amo...
Global warming is a potential threat to life on earth and to human society. It is by much evidence l...
In this work, we investigate the effects produced on the light absorption and scattering by silver n...
Plasmonic metal nanoparticles supporting localized surface plasmon resonances have attracted a great...