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Influence of temperature on luminescent coupling and material quality evaluation in inverted lattice‐matched and metamorphic multi‐junction solar cells

机译:温度对倒格匹配和变形多结太阳能电池发光耦合和材料质量评价的影响

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摘要

Inverted metamorphic multi-junction solar cells have reached efficiencies close to 46%. These solar cells contain very high-quality materials that exhibit strong luminescent coupling between the junctions. The presence of luminescent coupling has a significant impact on the behavior of multi-junction solar cells affecting the optimal design of these devices. Because of the importance of studying devices under real operating conditions, the temperature dependence of the luminescent coupling is analyzed over a range of 25–120°C. Luminescent coupling analysis results show a reduction of the luminescent coupling current as a function of temperature in two tandem components of an inverted metamorphic triple junction solar cell such as GaInP/GaAs and GaAs/GaInAs solar cells. This reduction is quantified and examined by means of luminescent coupling analysis and modeling, electroluminescence measurements and optical modeling at the device and subcell level. The results of the models are verified and discussed.
机译:倒置变质多结太阳能电池已经达到了效率接近46%。这些太阳能电池包含表现出结之间的强发光耦合非常高品质的材料。发光耦合的存在对影响这些器件的最佳设计的多结太阳能电池的行为有显著影响。因为实际工作条件下学习设备的重要性,发光耦合的温度依赖性进行了分析在一定范围的25-120℃。发光耦合分析结果表明降低在发光耦合电流作为温度处于倒置变质三结太阳能电池的两个串联的部件,诸如由GaInP / GaAs和砷化镓/ GaInAs的太阳能电池的功能的。这种减少被量化,并通过在该装置和子电池电平耦合分析和建模,电致发光的测量和光学建模发光的手段检测。该模型的结果进行了验证和讨论。

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