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Theoretical analysis on GaAs sub-cell doping concentration for triple-junction solar cells irradiated by proton based on TCAD simulation

机译:基于TCAD模拟的三结质子照射太阳能电池砷化镓亚电池掺杂浓度理论分析

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摘要

The degradation on the GaInP/GaAs/Ge triple-junction solar cells was irradiated by proton, and the solar cells with various GaAs sub-cell doping concentrations are modeled by the technology computer aided design (TCAD) simulation. The degradation results of related electrical parameters and external quantum efficiency (EQE) are studied. The degradation mechanism irradiated by proton is discussed. The short-circuit current, maximum power and conversion efficiency decrease with the increasing of GaAs sub-cell doping concentration. When the base doping concentration of GaAs sub-cell is 1x10(16) cm(-3), the degradation of short-circuit current is less than that of other base doping concentrations. Furthermore, under proton irradiation, with the increase of doping concentration of GaAs sub-cell, the open-circuit voltage first increases and then decreases. Meanwhile, when the base doping concentration of GaAs sub-cell is 2x10(17) cm(-3), the degradation of open-circuit voltage is less than that of other base doping concentrations. The research will provide the basic theories and device simulation method for GaInP/GaAs/Ge triple-junction solar cells radiation damage evaluation study and radiation hardening, and can provide guidance for the production of triple-junction solar cells in orbit.
机译:采用质子辐照GaInP/GaAs/Ge三结太阳能电池的降解过程,采用计算机辅助设计(TCAD)技术模拟了不同GaAs亚电池掺杂浓度的太阳能电池。研究了相关电参数和外量子效率(EQE)的退化结果。讨论了质子辐照的降解机理。短路电流、最大功率和转换效率随着砷化镓亚电池掺杂浓度的增加而降低。当砷化镓子电池的碱掺杂浓度为1x10(16) cm(-3)时,短路电流的衰减小于其他碱基掺杂浓度。此外,在质子辐照下,随着GaAs亚电池掺杂浓度的增加,开路电压先增大后减小。同时,当砷化镓子电池的碱掺杂浓度为2x10(17) cm(-3)时,开路电压的衰减小于其他基掺杂浓度。该研究将为GaInP/GaAs/Ge三结太阳能电池辐射损伤评估研究和辐射硬化提供基础理论和器件模拟方法,为在轨三结太阳能电池的生产提供指导。

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