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Improving solar cell efficiencies by up-conversion of sub-band-gap light

Thorsten TrupkeCentre for Third Generation Photovoltaics, University of New South Wales, NSW 2052, AustraliaMartin A. GreenCentre for Third Generation Photovoltaics, University of New South Wales, NSW 2052, AustraliaP. WürfelInstitut für Angewandte Physik, Universität Karlsruhe, D-76128 Karlsruhe, Germany
2002en
ABI

Annotatsiya

A system for solar energy conversion using the up-conversion of sub-band-gap photons to increase the maximum efficiency of a single-junction conventional, bifacial solar cell is discussed. An up-converter is located behind a solar cell and absorbs transmitted sub-band-gap photons via sequential ground state absorption/excited state absorption processes in a three-level system. This generates an excited state in the up-converter from which photons are emitted which are subsequently absorbed in the solar cell and generate electron-hole pairs. The solar energy conversion efficiency of this system in the radiative limit is calculated for different cell geometries and different illumination conditions using a detailed balance model. It is shown that in contrast to an impurity photovoltaic solar cell the conditions of photon selectivity and of complete absorption of high-energy photons can be met simultaneously in this system by restricting the widths of the bands in the up-converter. The upper limit of the energy conversion efficiency of the system is found to be 63.2% for concentrated sunlight and 47.6% for nonconcentrated sunlight.

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