DocumentCode :
1046030
Title :
In Situ Irradiation and Measurement of Triple Junction Solar Cells at Low Intensity, Low Temperature (LILT) Conditions
Author :
Harris, R.D. ; Imaizumi, M. ; Walters, R.J. ; Lorentzen, J.R. ; Messenger, S.R. ; Tischler, J.G. ; Ohshima, T. ; Sato, S. ; Sharps, P.R. ; Fatemi, N.S.
Author_Institution :
Jet Propulsion Lab., California Inst. of Technol., Pasadena, CA
Volume :
55
Issue :
6
fYear :
2008
Firstpage :
3502
Lastpage :
3507
Abstract :
The performance of triple junction InGaP/(In)GaAs/Ge space solar cells was studied following high energy electron irradiation at low temperature. Cell characterization was carried out in situ at the irradiation temperature while using low intensity illumination, and, as such, these conditions reflect those found for deep space, solar powered missions that are far from the sun. Cell characterization consisted of I-V measurements and quantum efficiency measurements. The low temperature irradiations caused substantial degradation that differs in some ways from that seen after room temperature irradiations. The short circuit current degrades more at low temperature while the open circuit voltage degrades more at room temperature. A room temperature anneal after the low temperature irradiation produced a substantial recovery in the degradation. Following irradiation at both temperatures and an extended room temperature anneal, quantum efficiency measurement suggests that the bulk of the remaining damage is in the (In)GaAs sub-cell.
Keywords :
cryogenic electronics; radiation effects; solar cells; IV measurements; InGaP-InGaAs-Ge; cell characterization; deep space; high energy electron irradiation; in situ irradiation; low intensity; low temperature; quantum efficiency measurements; solar powered missions; space solar cells; triple junction solar cells; Annealing; Degradation; Electrons; Lighting; Photovoltaic cells; Short circuit currents; Space missions; Sun; Temperature measurement; Voltage; LILT; quantum efficiency; radiation damage; space solar cells; triple junction solar cells;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2008.2006971
Filename :
4723791
Link To Document :
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