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  5. Highly efficient thermophotovoltaics enabled by photon re-use

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Article
en
2016

Highly efficient thermophotovoltaics enabled by photon re-use

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en
2016
DOI: 10.1109/pvsc.2016.7749766

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Eli Yablonovitch
Eli Yablonovitch

University of California, Berkeley

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Gregg Scranton
T. Patrick Xiao
Vidya Ganapati
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Abstract

Thin-film photovoltaic cells with high reflectivity in the below-bandgap spectral region are ideally suited for thermophotovoltaics. This allows the below-bandgap radiation to be reflected back to the emitter, so that their energy can be used to reheat the source, rather than being lost. In this work, we present a substantial improvement in the theoretical thermophotovoltaic conversion efficiency in the presence of photon re-use. We also predict the achievable conversion efficiency for a system that uses In 0.53 Ga 0.47 As photovoltaic cells, and present an experimental optical cavity to be used for future efficiency measurements. Owing to recent advances in thin-film photovoltaics, thermophotovoltaic efficiencies above 50% may soon be realizable.

How to cite this publication

Gregg Scranton, T. Patrick Xiao, Vidya Ganapati, J. F. Holzrichter, Per F. Peterson, Eli Yablonovitch (2016). Highly efficient thermophotovoltaics enabled by photon re-use. , DOI: https://doi.org/10.1109/pvsc.2016.7749766.

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Publication Details

Type

Article

Year

2016

Authors

6

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0

Total Files

0

Language

en

DOI

https://doi.org/10.1109/pvsc.2016.7749766

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