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Progress in the Development of Metamorphic Multi-Junction III-V Space-Solar Cells at Essential Research IncorporatedTheoretical calculations have shown that highest efficiency III-V multi-junction solar cells require alloy structures that cannot be grown on a lattice-matched substrate. Ever since the first demonstration of high efficiency metamorphic single junction 1.1 eV and 1.2 eV InGaAs solar cells by Essential Research Incorporated (ERI), interest has grown in the development of multi-junction cells of this type using graded buffer layer technology. ERI is currently developing a dual-junction 1.6 eV InGaP/1.1 eV InGaAs tandem cell (projected practical air-mass zero (AM0), one-sun efficiency of 28%, and 100-sun efficiency of 37.5%) under a Ballistic Missile Defense Command (BMDO) SBIR Phase II program. A second ongoing research effort at ERI involves the development of a 2.1 eV AlGaInP/1.6 eV InGaAsP/1.2 eV InGaAs triple-junction concentrator tandem cell (projected practical AM0 efficiency of 36.5% under 100 suns) under a SBIR Phase II program funded by the Air Force. We are in the process of optimizing the dual-junction cell performance. In case of the triple-junction cell, we have developed the bottom and the middle cell, and are in the process of developing the layer structures needed for the top cell. A progress report is presented in this paper.
Document ID
20030000586
Acquisition Source
Glenn Research Center
Document Type
Conference Paper
Authors
Sinharoy, Samar
(Essential Research, Inc. Cleveland, OH United States)
Patton, Martin O.
(Essential Research, Inc. Cleveland, OH United States)
Valko, Thomas M., Sr.
(Essential Research, Inc. Cleveland, OH United States)
Weizer, Victor G.
(Essential Research, Inc. Cleveland, OH United States)
Date Acquired
September 7, 2013
Publication Date
October 1, 2002
Publication Information
Publication: 17th Space Photovoltaic Research and Technology Conference
Subject Category
Spacecraft Propulsion And Power
Funding Number(s)
CONTRACT_GRANT: F29601-99-C-0135
CONTRACT_GRANT: NAS3-99174
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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