• Acta Optica Sinica
  • Vol. 40, Issue 16, 1631001 (2020)
Pingyuan Yan1, Jielei Tu1、*, Abuduwayiti Aierken1, Weinan Zhang1, Lei Li1, Kai Hu1, and Qiqi Lei2
Author Affiliations
  • 1Solar Energy Research Institute, Yunnan Normal University, Kunming, Yunnan 650500, China
  • 2Xinjiang Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Urumqi, Xinjiang 830011, China
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    DOI: 10.3788/AOS202040.1631001 Cite this Article Set citation alerts
    Pingyuan Yan, Jielei Tu, Abuduwayiti Aierken, Weinan Zhang, Lei Li, Kai Hu, Qiqi Lei. Electron Irradiation Performance of GaInP/Ga(In)As/Ge Triple Junction Solar Cell Based on Bragg Reflector[J]. Acta Optica Sinica, 2020, 40(16): 1631001 Copy Citation Text show less
    Reflectance of AlxGa1-x As/Al1-xGax As for various values of Al component and pairs
    Fig. 1. Reflectance of AlxGa1-x As/Al1-xGax As for various values of Al component and pairs
    Reflectance of GaAs/AlxGa1-xAs for various values of Al component and pairs
    Fig. 2. Reflectance of GaAs/AlxGa1-xAs for various values of Al component and pairs
    Structure of GaInP/Ga(In)As/Ge UMM3J solar cell
    Fig. 3. Structure of GaInP/Ga(In)As/Ge UMM3J solar cell
    Simulated and measured reflectance of DBR structure in UMM3J solar cell
    Fig. 4. Simulated and measured reflectance of DBR structure in UMM3J solar cell
    I-V curves of UMM3J solar cell at different irradiation fluences
    Fig. 5. I-V curves of UMM3J solar cell at different irradiation fluences
    Normalized electrical performance curves of UMM3J solar cell at different electron irradiation fluences
    Fig. 6. Normalized electrical performance curves of UMM3J solar cell at different electron irradiation fluences
    EQE curves of UMM3J solar cell at different irradiation fluences
    Fig. 7. EQE curves of UMM3J solar cell at different irradiation fluences
    Short-circuit current denstiy of sub-cells at different irradiation fluences. (a) Degradation curves; (b) normalized curves
    Fig. 8. Short-circuit current denstiy of sub-cells at different irradiation fluences. (a) Degradation curves; (b) normalized curves
    Degradation of short-circuit current denstiy Jsc of each sub-cell at different irradiation fluences
    Fig. 9. Degradation of short-circuit current denstiy Jsc of each sub-cell at different irradiation fluences
    Reflectance of UMM3J solar cell at different irradiation fluences. (a) Whole curves; (b) partial enlargement
    Fig. 10. Reflectance of UMM3J solar cell at different irradiation fluences. (a) Whole curves; (b) partial enlargement
    Electronfluence /(e·cm-2)Voc /VIsc /APmax /WFFEffIph /mAI0 /AnRsRsh
    02.630.1570.3260.78928.1413.057.37×10-81.7417.7520000
    1×10152.430.1420.2720.78824.0811.716.86×10-81.8318.085675
    2×10152.350.1370.2530.78321.7311.325.58×10-71.8518.293857
    5×10152.30.130.2270.7619.5710.511.02×10-71.8620.402625
    Table 1. Electrical parameters of UMM3J solar cell at different electron irradiation fluences
    Parametercpφ0p / (e·cm-2)
    Voc0.07138.31×1013
    Isc0.11931.87×1014
    Pmax0.2172.07×1014
    Table 2. Degradation of main parameters of UMM3J solar cell
    Electron fluence /(e·cm-2)Dd /(MeV·g-1)
    1×10153.17×1010
    2×10156.34×1010
    5×101515.86×1010
    Table 3. Dd of UMM3J solar cell at different electron irradiation fluences
    Pingyuan Yan, Jielei Tu, Abuduwayiti Aierken, Weinan Zhang, Lei Li, Kai Hu, Qiqi Lei. Electron Irradiation Performance of GaInP/Ga(In)As/Ge Triple Junction Solar Cell Based on Bragg Reflector[J]. Acta Optica Sinica, 2020, 40(16): 1631001
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