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Experimental study and theoretical analysis of photoelectric characteristics of AlxGa₁₋xAs–p-GaAs–n-GaAs-based photoconverters with relief interfaces

机译:具有浮雕界面的AlxGa-xAs–p-GaAs–n-GaAs基光电转换器的光电特性的实验研究和理论分析

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摘要

We studied experimentally the photoelectric characteristics of the AlxGa₁₋xAs–p-GaAs–n-GaAs structures with relief interfaces. A theoretical analysis of spectral dependences of internal quantum efficiency of short-circuit current in the above solar cells (SC) was performed. In particular, the low-energy spectral region (where absorption is weak) was considered. A comparison was made between the experimental and theoretical photocurrent spectral curves. From it, we determined a number of parameters of the AlxGa1–xAs and GaAs р-layers, as well as of the n-GaAs layers. Some recommendations concerning the ways to increase photocurrent and extend photosensitivity spectral region were developed for technologists. A theoretical analysis of a “spotty” model for open-circuit voltage formation in relief AlxGa₁₋xAs–p-GaAs–n-GaAs-based SC was made. This model enables one to give a qualitative explanation for decrease of open-circuit voltage in relief SC as compared to the case of flat interface.
机译:我们通过实验研究了具有浮雕界面的AlxGa₁₋xAs–p-GaAs–n-GaAs结构的光电特性。对上述太阳能电池(SC)中短路电流的内部量子效率的光谱依赖性进行了理论分析。特别是考虑了低能量的光谱区域(吸收弱)。在实验和理论光电流光谱曲线之间进行了比较。由此,我们确定了AlxGa1-xAs和GaAsр层以及n-GaAs层的许多参数。为技术人员提出了一些有关增加光电流和扩展光敏性光谱区域的方法的建议。对基于浮雕AlxGa₁₋xAs–p-GaAs–n-GaAs的SC中开路电压形成的“斑点”模型进行了理论分析。与平坦接口的情况相比,该模型可以对浮雕SC中的开路电压降低进行定性解释。

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