We introduce an effective refractive-index model to predict the spectral positions of localized surface plasmon (LSP) modes of a silver nanoparticle on a thin-film silicon substrate using a semi-analytical method. The enhanced scattering into the substrate caused by the nanoparticle dipole and quadrupole modes is verified by comparing theoretical and simulation results. We suggest that the LSP modes can be tuned linearly with the thickness of the silicon substrate and the size of the nanoparticles. These findings provide simple and important physical insights for optimizing the absorption in a thin-film silicon solar cell by tuning the LSP modes of the nanoparticles deployed on the surface.Chemistry, PhysicalPhysics, Atomic, Molecular &...
Disk-shaped metal nanoparticles on high-index substrates can support resonant surface plasmon polari...
International audienceIn this work, we investigate silver (Ag) nanoparticle-related plasmonic effect...
Thin-film silicon solar cells need efficient light absorption to achieve high efficiencies. The stan...
Recent research in the rapidly emerging field of plasmonics has shown the potential to significantly...
In this work, we investigate the effects produced on the light absorption and scattering by silver n...
We find that three mechanisms lead to the absorption enhancements of light in a thin-film amorphous ...
Silver nanoparticles have been fabricated on glass and silicon substrates, and silicon solar cells, ...
Strong electromagnetic field enhancement that occurs under conditions of the surface plasmon excitat...
The effect of silver nanoparticles showing localised plasmonic resonances on the efficiency of thin ...
An extended Mie scattering theory is used in this paper to analyze the surface-plasmon enhanced ligh...
The surface plasmon polariton(SPP) is a novel approach for light trapping in solar cells. SPP enhanc...
The effect of a thin dielectric film on the plasmonic behaviour of metal nanoparticles (MNPs) above ...
We study the effect of metal nanoparticles, showing localised plasmonic resonances, on the spectrall...
Optically driven localised surface plasmons can be excited on sub-wavelength metal particles, which ...
Silver nanoparticles can be used as light scattering elements for enhancing the energy conversion ef...
Disk-shaped metal nanoparticles on high-index substrates can support resonant surface plasmon polari...
International audienceIn this work, we investigate silver (Ag) nanoparticle-related plasmonic effect...
Thin-film silicon solar cells need efficient light absorption to achieve high efficiencies. The stan...
Recent research in the rapidly emerging field of plasmonics has shown the potential to significantly...
In this work, we investigate the effects produced on the light absorption and scattering by silver n...
We find that three mechanisms lead to the absorption enhancements of light in a thin-film amorphous ...
Silver nanoparticles have been fabricated on glass and silicon substrates, and silicon solar cells, ...
Strong electromagnetic field enhancement that occurs under conditions of the surface plasmon excitat...
The effect of silver nanoparticles showing localised plasmonic resonances on the efficiency of thin ...
An extended Mie scattering theory is used in this paper to analyze the surface-plasmon enhanced ligh...
The surface plasmon polariton(SPP) is a novel approach for light trapping in solar cells. SPP enhanc...
The effect of a thin dielectric film on the plasmonic behaviour of metal nanoparticles (MNPs) above ...
We study the effect of metal nanoparticles, showing localised plasmonic resonances, on the spectrall...
Optically driven localised surface plasmons can be excited on sub-wavelength metal particles, which ...
Silver nanoparticles can be used as light scattering elements for enhancing the energy conversion ef...
Disk-shaped metal nanoparticles on high-index substrates can support resonant surface plasmon polari...
International audienceIn this work, we investigate silver (Ag) nanoparticle-related plasmonic effect...
Thin-film silicon solar cells need efficient light absorption to achieve high efficiencies. The stan...