Publication | Closed Access
Broadband light-trapping in ultra-thin nano-structured solar cells
12
Citations
33
References
2013
Year
EngineeringOrganic Solar CellPlasmon-enhanced PhotovoltaicsPhotovoltaicsElectromagnetic MetamaterialsStrong Light EnhancementBroadband Light-trappingNanophotonicsSub-wavelength ScalePlasmonic MaterialElectrical EngineeringPhysicsThickness ReductionPlasmonicsApplied PhysicsOptical TrappingLight AbsorptionSolar CellsOptoelectronicsSolar Cell Materials
Conventional light trapping techniques are inefficient at the sub-wavelength scale. This is the main limitation for the thickness reduction of thin-film solar cells below 500nm. We propose a novel architecture for broadband light absorption in ultra-thin active layers based on plasmonic nano-cavities and multi-resonant mechanism. Strong light enhancement will be shown numerically for photovoltaic materials such as CIGSe and GaAs. First experiments on ultrathin nano-patterned CIGSe solar cells will be presented.
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