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Solar Cell Analysis under Venus Atmosphere Conditions
Jonathan Grandidier
, Alexander Kirk
, Mark L. Osowski
, Shizhao Fan
,
Minjoo L. Lee
, Margaret Stevens
, Phillip Jahelka
, Giulia Tagliabue
, Harry A. Atwater
, James A. Cutts
Electrical and Computer Engineering
Micro and Nanotechnology Lab
Research output
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Keyphrases
Solar Cell
100%
Atmospheric Conditions
100%
Cell Analysis
100%
Venus
100%
Venus Atmosphere
100%
High Temperature
50%
Gallium Arsenide
50%
Low Intensity
50%
Current-voltage
50%
Solar Cell Model
50%
External Quantum Efficiency
50%
GaInP
50%
Quantum Efficiency Measurement
50%
Structure Design
50%
Solar Cell Architecture
50%
Double Junction
50%
High-temperature Solar Cell
50%
Earth and Planetary Sciences
Venus Atmosphere
100%
Solar Cell
100%
Efficiency Measurement
20%
Physics
Solar Cell
100%
Venus Atmosphere
100%
Engineering
Solar Cell
100%
Gallium Arsenide
25%
External Quantum Efficiency
25%
Modeling Solar Cell
25%
Material Science
Solar Cell
100%
Gallium Arsenide
20%
Surface (Surface Science)
20%