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15.3%-Efficient GaAsP Solar Cells on GaP/Si Templates
Michelle Vaisman
, Shizhao Fan
, Kevin Nay Yaung
, Emmett Perl
, Diego Martín-Martín
, Zhengshan J. Yu
, Mehdi Leilaeioun
, Zachary C. Holman
,
Minjoo L. Lee
Electrical and Computer Engineering
Micro and Nanotechnology Lab
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Keyphrases
Solar Cell
100%
GaAsP
100%
III-V
33%
High Efficiency
33%
High Performance
16%
Recent Advances
16%
Monolithically Integrated
16%
Optical Filters
16%
Device Design
16%
Efficiency Increase
16%
Material Quality
16%
On-state Current
16%
Single Junction
16%
Visible Light
16%
Multijunction
16%
Antireflection Coating
16%
Improved Device
16%
Si Devices
16%
Si Solar Cell
16%
Efficiency Limit
16%
Integrated Photovoltaic
16%
Top Cell
16%
Bottom Cell
16%
III-V Technology
16%
Practical Efficiency
16%
Spectral Efficiency Analysis
16%
Engineering
Solar Cell
100%
Illustrates
50%
Photovoltaics
50%
Material Quality
50%
Optical Filter
50%
Si Device
50%
Integrated Photovoltaics
50%
Spectral Efficiency
50%
Bottom Cell
50%
Material Science
Solar Cell
100%
Photovoltaics
100%
Antireflection Coating
50%
Computer Science
Spectral Efficiency
100%
Visible Spectrum
100%