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A Novel Solar Simulator Based on a Supercontinuum Laser for Solar Cell Device and Materials Characterization

机译:基于超连续谱激光器的新型太阳模拟器用于太阳电池装置及材料表征

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摘要

The design, operation, and application of a novel solar simulator based on a high-power supercontinuum fiber laser are described. The simulator features a multisun irradiance with continuous spectral coverage from the visible to the infrared. By use of a prism-based spectral shaper, the simulator can be matched to any desired spectral profile, including the ASTM G-173-03 air-mass 1.5 reference spectrum. The simulator was used to measure the efficiency of gallium arsenide (GaAs), crystalline silicon (Si), amorphous Si, and copper–indium–gallium–selenide (CIGS) thin-film solar cells, showing agreement with independent measurements. The pulsed temporal characteristic of the simulator was studied and would appear to have a negligible influence on measured cell efficiency. The simulator light was focused to a spot of approximately 8 μm in diameter and used to create micrometer-scale spatial maps of full spectrum optical-beam-induced current. Microscopic details such as grid lines, damage spots, and material variations were selectively excited and resolved on GaAs and CIGS cells. The spectral shaping capabilities were used to create output spectra appropriate for selectively light-biasing multijunction cell layers. The simulator was used to create variable blue-rich and red-rich spectra that were applied to a GaInP/GaAs tandem solar cell to illustrate the current-limiting behavior.
机译:描述了一种基于大功率超连续谱光纤激光器的新型太阳模拟器的设计,操作和应用。该模拟器具有多太阳辐照度,具有从可见光到红外光的连续光谱覆盖范围。通过使用基于棱镜的光谱整形器,可以将模拟器与任何所需的光谱轮廓进行匹配,包括ASTM G-173-03空气质量1.5参考光谱。该模拟器用于测量砷化镓(GaAs),晶体硅(Si),非晶硅和铜-铟-镓-硒化(CIGS)薄膜太阳能电池的效率,与独立的测量结果吻合。研究了模拟器的脉冲时间特性,对测量的电池效率影响似乎可以忽略不计。将模拟器光聚焦到直径约为8μm的点上,并用于创建全光谱光束感应电流的微米级空间图。在GaAs和CIGS电池上有选择地激发并解析了微观细节,例如网格线,损伤点和材料变化。光谱整形功能用于创建适合选择性偏置多结单元层的输出光谱。该模拟器用于创建可变的富蓝和富红光谱,将其应用于GaInP / GaAs串联太阳能电池以说明限流行为。

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