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On the temperature dependence of dual-junction laser power converters

机译:关于双结激光功率转换器的温度依赖性

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Dual-junction GaAs laser power converters optimized for one monochromatic wavelength are presented, and their temperature dependence is experimentally evaluated. External quantum efficiency and irradiance-dependent current-voltage measurements (10 to 104W/cm(2)) under monochromatic laser light (809nm) have been undertaken to quantify temperature- and irradiance-dependent effects on the performance. The temperature dependence of the current matching of the two subcells, caused by the temperature-dependent absorbance, is quantified. Losses in performance due to variations in operating temperature for different power-by-light applications are calculated to be between 16.2% and 21.0%. Future potential enhancements in cell performance are discussed. For elevated temperatures, super-linear behavior of the spectral response with increasing irradiance is observed, which is attributed to effective luminescent coupling from the top to the bottom subcell as the device becomes more radiative limited. For low temperatures, where the bottom cell is overproducing, no dependence on irradiance is found, which shows the influence of photon transport losses to the substrate. (c) 2016 The Authors. Progress in Photovoltaics: Research and Applications published by John Wiley & Sons Ltd.
机译:提出了针对一个单色波长进行优化的双结GaAs激光功率转换器,并通过实验评估其温度依赖性。已经进行了单色激光(809nm)下的外部量子效率和依赖性电流 - 电压测量(10至104W / cm(2)),以量化温度和辐照度依赖性对性能的影响。量化了由温度依赖性吸光度引起的两个子单元的电流匹配的温度依赖性。由于不同功率逐光应用的操作温度变化的性能损失计算为16.2%和21.0%。讨论了细胞性能的未来潜在增强。对于升高的温度,观察到具有增加的辐照度的光谱响应的超线性行为,这归因于从顶部到底部子单元的有效发光耦合,因为该装置变得更加辐射有限。对于低温,在底部电池过度增加的情况下,未发现对辐照度的依赖性,这表明光子传输损失对基板的影响。 (c)2016年作者。 Photovoltaics的进展:John Wiley&Sons Ltd.发表的研究和申请

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