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- W2010640719 abstract "Multiple champion solar cells have pin configurations including interdigitated back contact cells, heterojunction with intrinsic thin layer cells, and most recently the 41% efficiency Ga 0.5 P/Ga 0.99 In 0.01 As/Ge cell. The motivation for such structures is not widely understood. This proposed model is based on Shockley's fundamental assumption that open circuit voltage is determined by the splitting of the quasi-Fermi levels as described by the exponential Boltzmann distributions in terms of the optically generated carrier concentrations. For carrier concentrations of 1015 cm −3, the modeled efficiency is 42% for band gap values of 1.8eV, 1.4 eV and 0.9 eV. At 1017 cm−3 and 1019 cm−3 concentrations, the modeled efficiencies rise to 54% and 65% respectively for band gap values of 1.7 eV, 1.2 eV and 0.7 eV. High generated carrier concentrations can be achieved with low doping levels since carrier lifetimes are inversely proportional to doping levels." @default.
- W2010640719 created "2016-06-24" @default.
- W2010640719 creator A5085132847 @default.
- W2010640719 date "2011-06-01" @default.
- W2010640719 modified "2023-09-27" @default.
- W2010640719 title "Modeled performance of triple junction, double heterostructure p<sup>+</sup>in<sup>+</sup> solar cells" @default.
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- W2010640719 doi "https://doi.org/10.1109/pvsc.2011.6186012" @default.
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