Publication | Open Access
Multi-resonant absorption in ultra-thin silicon solar cells with metallic nanowires
41
Citations
26
References
2013
Year
Multi-resonant Light TrappingEngineeringMetallic NanomaterialsPlasmon-enhanced PhotovoltaicsPhotovoltaicsFabry-perot ResonancesGuided-wave OpticNanoscale ScienceMaterials ScienceElectrical EngineeringNanoscale SystemNanotechnologyMetallic NanowiresPhotonic DevicePlasmonicsApplied PhysicsFront WindowLight AbsorptionSolar CellsOptoelectronicsSolar Cell Materials
We propose a design to confine light absorption in flat and ultra-thin amorphous silicon solar cells with a one-dimensional silver grating embedded in the front window of the cell. We show numerically that multi-resonant light trapping is achieved in both TE and TM polarizations. Each resonance is analyzed in detail and modeled by Fabry-Perot resonances or guided modes via grating coupling. This approach is generalized to a complete amorphous silicon solar cell, with the additional degrees of freedom provided by the buffer layers. These results could guide the design of resonant structures for optimized ultra-thin solar cells.
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