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Reciprocity Between Electroluminescence and Quantum Efficiency Used for the Characterization of Silicon Solar Cells

机译:用于表征硅太阳能电池的电致发光和量子效率之间的互易性

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摘要

Spectrally and spatially resolved electroluminescence emission of crystalline silicon solar cells is interpreted in terms of two electro-optical reciprocity relations. The first relation links the photovoltaic quantum efficiency to the electroluminescence spectrum. Both methods contain information on recombination and the optical pathlength of the incident light, simultaneously. From the electroluminescence spectrum, we derive the pathlength enhancement factor of textured and untextured crystalline silicon solar cells. Further, we use local quantum efficiency measurements to quantitatively explain light induced current as well as panchromatic electroluminescence images. A second reciprocity relation connects open circuit voltage of a solar cell with the light emitting diode quantum efficiency of the same device. For a given quality of light trapping and a given open circuit voltage, we predict the attainable LED quantum efficiency and verify our results experimentally.
机译:根据两个电光互易关系来解释晶体硅太阳能电池的光谱和空间分辨电致发光。第一个关系将光伏量子效率与电致发光光谱联系起来。两种方法都同时包含有关重组和入射光的光程长度的信息。从电致发光光谱,我们得出带纹理的和无纹理的晶体硅太阳能电池的光程增强因子。此外,我们使用局部量子效率测量来定量解释光感应电流以及全色电致发光图像。第二互易关系将太阳能电池的开路电压与同一器件的发光二极管量子效率联系起来。对于给定的光捕获质量和给定的开路电压,我们预测了可获得的LED量子效率,并通过实验验证了我们的结果。

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