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- W1974493232 abstract "Wave-optics analysis is performed to investigate the benefits of integrating photonic crystals into micromorph cells.Specifically, we theoretically investigate two novel micromorph cells which integrate photonic crystals and comparetheir optical performance with that of conventional micromorph cells. In the first innovative micromorph cellconfiguration the intermediate reflector is a selectively transparent and conducting photonic crystal (STCPC). In thesecond micromorph cell its bottom μc-Si:H cell is structured in the form of an inverted opal. Our results show that withthe AM1.5 solar spectrum at normal incidence the current generated in a conventional micromorph cell is increased from12.1 mA/cm2 to 13.0 mA/cm2 when the bottom μc-Si:H cell is structured in the form of an inverted opal. However, thecurrent generated in the micromorph cell can be increased to as much as 13.7 mA/cm2 when an STCPC is utilized as theintermediate reflector. Furthermore, the thickness of the μc-Si:H opal must be relatively large in order to absorb asufficient amount of the solar irradiance, which is expected to degrade the electrical performance of the device. Incontrast, our results suggest that STCPC intermediate reflectors are a viable technology that could potentially enhancethe performance of micromorph cells." @default.
- W1974493232 created "2016-06-24" @default.
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- W1974493232 date "2010-06-17" @default.
- W1974493232 modified "2023-10-17" @default.
- W1974493232 title "Integrating photonic crystals in thin film silicon photovoltaics" @default.
- W1974493232 doi "https://doi.org/10.1117/12.873003" @default.
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