炼金术中的太阳
材料科学
太阳能电池
薄脆饼
光电子学
砷化镓
量子效率
电流(流体)
发光
联轴节(管道)
硅
能量转换效率
光学
物理
热力学
冶金
作者
Bernice Mae F. Yu Jeco,Elias Veinberg‐Vidal,Laura Vauche,Katsuhisa Yoshida,Ryo Tamaki,Nazmul Ahsan
标识
DOI:10.1117/1.jpe.9.015504
摘要
Strong luminescent coupling (LC) effect reduces current mismatch in III-V-based multijunction solar cells and consequently improves their power conversion efficiency. The LC current production in the Si bottom cell of InGaP/AlGaAs//Si triple junction solar cells having different sizes was investigated to determine the cell area dependence of LC effect. This was probed through laser beam-induced current (LBIC) mapping. The areal mapping was then assessed by obtaining the absolute difference between the quantum efficiencies calculated from the fitted LBIC map and simulated LC current considering uniform distribution using a quasi-two-dimensional electro-optical prediction model. At 9.17 suns concentration difference between the AlGaAs middle cell and the current-limiting Si bottom cell, the absolute LC quantum efficiency differences ranged between 0.16% and 1.68% in various cell sizes, which indicate potential current production increase if the LC current is made uniform.
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