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Nano-scale Investigation of Light Scattering at Randomly Textured Light Trapping Structures for Thin-film Silicon Solar Cells

机译:薄膜硅太阳能电池随机纹理光阱结构处光散射的纳米尺度研究。

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We report on nano-scale optical effects of amorphous silicon layer conformally deposited on randomly textured zinc oxide layers on glass substrates investigated by near-field scanning microscopy. Such textured layers are used in thin-film photovoltaic devices to enhance light trapping. Experimental results are compared to theoretical data, obtained from large scale finite-difference time-domain simulations. Light localization on the surface of the textured interface and a focusing of light by the structure further away are observed. The measurements are compared with simulations, which provide additional insight into the light intensity distribution inside the solar cell on a nm-scale. It will be shown how this information can be used to optimize light trapping in thin-film solar cells using an amorphous silicon solar cell as an example.
机译:我们报告了通过近场扫描显微镜研究,共形沉积在玻璃基板上随机织构的氧化锌层上的非晶硅层的纳米尺度光学效应。这种纹理化层用于薄膜光伏器件中以增强光捕获。将实验结果与从大规模有限差分时域仿真获得的理论数据进行比较。观察到光在带纹理的界面的表面上的局部化,以及结构周围较远处的光聚焦。将测量结果与仿真结果进行比较,仿真结果可以进一步了解纳米级太阳能电池内部的光强度分布。将以非晶硅太阳能电池为例,说明如何使用此信息来优化薄膜太阳能电池中的光捕获。

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