ISCAS OpenIR
numerical simulation of high-efficiency ingap/gaas/ingaas triple-junction solar cells grown on gaas substrate
Liang J.; Hu W.D.; Chen X.S.; Xia C.S.; Cheng L.W.
2012
Conference Name12th International Conference on Numerical Simulation of Optoelectronic Devices, NUSOD 2012
SourceProceedings of the International Conference on Numerical Simulation of Optoelectronic Devices, NUSOD
Pages35-36
Conference DateAugust 28, 2012 - August 31, 2012
Conference PlaceShanghai, China
Indexed TypeEI
ISSN2158-3234
ISBN9781467316040
Department(1) National Lab for Infrared Physics Shanghai Institute of Technical Physics Chinese Academy of Sciences 500 Yu Tian Road Shanghai 200083 China; (2) Crosslight Software China 2790 Zhongshan Bei Road Shanghai 200063 China
English AbstractThe structure parameters and illumination condition for InGaP/GaAs/InGaAs triple-junction solar cells grown on GaAs substrate have been numerically studied to search the optimal point of device performance. The dependences of conversion efficiency, I-V curves, and band diagram on the structure parameters and illumination condition have been investigated. Our work shows that the performances are largely dependent on the geometric design of device and the optimal parameters are extracted. © 2012 IEEE.; The structure parameters and illumination condition for InGaP/GaAs/InGaAs triple-junction solar cells grown on GaAs substrate have been numerically studied to search the optimal point of device performance. The dependences of conversion efficiency, I-V curves, and band diagram on the structure parameters and illumination condition have been investigated. Our work shows that the performances are largely dependent on the geometric design of device and the optimal parameters are extracted. © 2012 IEEE.
KeywordComputer Simulation Conversion Efficiency Gallium Arsenide Optimization Solar Cells
Language英语
Content Type会议论文
URIhttp://ir.iscas.ac.cn/handle/311060/15942
Collection中国科学院软件研究所
Recommended Citation
GB/T 7714
Liang J.,Hu W.D.,Chen X.S.,et al. numerical simulation of high-efficiency ingap/gaas/ingaas triple-junction solar cells grown on gaas substrate[C],2012:35-36.
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