基于流体动力学和能量输运模型的GaAs引脚太阳能电池热载子效应

T. Sogabe, Kodai Shiba, K. Sakamoto
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引用次数: 1

摘要

研究了热载流子效应和热载流子动力学对砷化镓太阳能电池器件性能的影响。采用详细平衡热力学模型和流体动力能量输运模型对基于常规工作原理的热载体太阳能电池进行了数值模拟。首次证明了这两个模型之间的拟等价性。在模拟中,采用特殊设计的砷化镓太阳能电池,通过增加热载子能量弛豫时间,观察到开路电压的增加。详细分析了热载子温度的空间分布及其与电场的相互作用,以及三种热载子复合过程:俄歇复合、肖克利-里德-霍尔复合和辐射复合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydrodynamic and Energy Transport Model-Based Hot-Carrier Effect in GaAs pin Solar Cell
The hot-carrier effect and hot-carrier dynamics in GaAs solar cell device performance were investigated. Hot-carrier solar cells based on the conventional operation principle were simulated based on the detailed balance thermodynamic model and the hydrodynamic energy transportation model. A quasi-equivalence between these two models was demonstrated for the first time. In the simulation, a specially designed GaAs solar cell was used, and an increase in the open-circuit voltage was observed by increasing the hot-carrier energy relaxation time. A detailed analysis was presented regarding the spatial distribution of hot-carrier temperature and its interplay with the electric field and three hot-carrier recombination processes: Auger, Shockley–Read–Hall, and radiative recombinations.
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