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Contrast enhancement in the detection of defects in transparent layered structures: The use of optothermal interference technique in solar cell investigation

机译:透明层状结构缺陷检测中的对比增强:光热干涉技术在太阳能电池研究中的应用

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摘要

This article shows the enhanced sensitivity of the optothermal interference technique in the detection of local differences (nonhomogeneity in thickness and optothermal parameters), compared to the conventional optical interference, when investigating layered transparent structures. The measured signal is sensitive to the reflectance variation at the distinct interfaces, function of temperature, as well as to the optical phase lag between the reflected beams. Measurements made on solar cells show contrast of the order of 100% in the optothermal interference, while the conventional optical interference presents a contrast of only 15%. A model based on the reflectance variation at each interface describes the signal behavior as a function of modulation frequency. Theoretical calculation based on this model evidences the influence of the optothermal parameters in the signal contrast. (C) 2000 American Institute of Physics. [S0021-8979(00)04821-0].
机译:当研究分层透明结构时,与传统的光学干涉相比,本文显示了光热干涉技术在检测局部差异(厚度和光热参数的不均匀性)方面具有更高的灵敏度。被测信号对不同界面处的反射率变化,温度的函数以及反射光束之间的光学相位滞后敏感。在太阳能电池上进行的测量显示出光热干涉的对比度约为100%,而常规的光学干涉的对比度仅为15%。基于每个接口的反射率变化的模型将信号行为描述为调制频率的函数。基于该模型的理论计算证明了光热参数对信号对比度的影响。 (C)2000美国物理研究所。 [S0021-8979(00)04821-0]。

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