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Light Trapping in Thin Crystalline Si Solar Cells Using Surface Mie Scatterers
2014
IEEE Journal of Photovoltaics
Dielectric nanoparticles placed on top of a thin-film solar cell strongly enhance light absorption in the cell over a broad spectral range due to the preferential forward scattering of light from leaky Mie resonances in the particle. In this study, we systematically study with numerical simulations the absorption of light into thin (1-100 μm) crystalline Si solar cells patterned with Si nanocylinder arrays on top of the cell. We then use an analytical model to calculate the solar cell
doi:10.1109/jphotov.2013.2292744
fatcat:ezhhwxn6b5hzhccxgaqy5lfbpe