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High-Efficiency Multi-Junction Space Solar Development Utilizing Lattice GradingProgress towards achieving a high one-sun air mass 0 (AM0) efficiency in a monolithic dual junction solar cell comprised of a 1.62 eV InGaP top cell and a 1.1 eV InGaAs bottom cell grown on buffered GaAs is reported. The performance of stand-alone 1.62 eV InGaP and 1.1 eV InGaAs cells is compared to that of the dual junction cell. Projected AM0 efficiencies of 15.7% and 16.5% are expected for the 1.62 eV InGaP and 1.1 eV InGaAs cells grown on buffered GaAs. The dual junction cell has a projected one-sun AM0 conversion efficiency of 17%. The projected efficiencies are based upon the application of an optimized anti-reflective coating (ARC) to the as-grown cells. Quantum efficiency (QE) data obtained from the dual junction cell indicate that is is bottom cell current limited with the top cell generating 50% more current than the bottom cell. A comparison of the QE data for the stand-alone 1.1 eV InGaAs cell to that of the 1.1 eV InGaAs bottom cell in the tandem configuration indicates a degradation of the bottom cell conversion efficiency in the tandem configuration. The origin of this performance degradation is at present unknown. If the present limitation can be overcome, then a one-sun AM0 efficiency of 26% is achievable with the 1.62 eV/1.1 eV dual junction cell grown lattice-mismatched to GaAs.
Document ID
20050203761
Acquisition Source
Glenn Research Center
Document Type
Conference Paper
Authors
Stan, Mark A.
(Essential Research, Inc. Cleveland, OH, United States)
Weizer, Victor G.
(Essential Research, Inc. Cleveland, OH, United States)
Pal, AnnaMaria
(Essential Research, Inc. Cleveland, OH, United States)
Garverick, Linda M.
(Essential Research, Inc. Cleveland, OH, United States)
Khan, Osman
(Essential Research, Inc. Cleveland, OH, United States)
Sinharoy, Samar
(Essential Research, Inc. Cleveland, OH, United States)
Hoffman, Richard W., Jr.
(Ohio Aerospace Inst. Cleveland, OH, United States)
Jenkins, Phillip P.
(Ohio Aerospace Inst. Cleveland, OH, United States)
Scheiman, David A.
(Ohio Aerospace Inst. Cleveland, OH, United States)
Fatemi, Navid S.
(Emcore Corp. Albuquerque, NM, United States)
Date Acquired
September 7, 2013
Publication Date
May 1, 2005
Publication Information
Publication: 16th Space Photovoltaic Research and Technology Conference
Subject Category
Solid-State Physics
Funding Number(s)
CONTRACT_GRANT: NAS3-98026
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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