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Analysis by Finite Element Calculations of Light Scattering in Laser-textured AZO Films for PV thin-film Solar Cells

机译:用于光伏薄膜太阳能电池的激光织构AZO薄膜中光散射的有限元计算分析

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摘要

In the thin-film photovoltaic industry, to achieve a high light scattering in one or more of the cell interfaces is one of the strategies that allow an enhancement of light absorption inside the cell and, therefore, a better device behavior and efficiency. Although chemical etching is the standard method to texture surfaces for that scattering improvement, laser light has shown as a new way for texturizing different materials, maintaining a good control of the final topography with a unique, clean, and quite precise process. In this work AZO films with different texture parameters are fabricated. The typical parameters used to characterize them, as the root mean square roughness or the haze factor, are discussed and, for deeper understanding of the scattering mechanisms, the light behavior in the films is simulated using a finite element method code. This method gives information about the light intensity in each point of the system, allowing the precise characterization of the scattering behavior near the film surface, and it can be used as well to calculate a simulated haze factor that can be compared with experimental measurements. A discussion of the validation of the numerical code, based in a comprehensive comparison with experimental data is included
机译:在薄膜光伏产业中,在一个或多个电池界面中实现高光散射是一种策略,可以提高电池内部的光吸收,从而提高设备的性能和效率。尽管化学蚀刻是使表面纹理化以提高散射效果的标准方法,但激光已显示为纹理化不同材料的新方法,并通过独特,清洁且相当精确的工艺对最终形貌进行了良好控制。在这项工作中,制作了具有不同纹理参数的AZO膜。讨论了用于表征它们的典型参数,即均方根粗糙度或雾度因子,并且为了更深入地了解散射机理,使用有限元方法代码模拟了膜中的光行为。此方法提供有关系统每个点的光强度的信息,从而可以精确表征膜表面附近的散射行为,并且还可以用于计算模拟雾度因子,可以将其与实验测量结果进行比较。在与实验数据进行全面比较的基础上,讨论了数字代码的验证

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