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Optimization of triangle grating structures for light trapping in thin film silicon solar cells

机译:薄膜硅太阳能电池光捕获三角光栅结构的优化

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The influence of different triangular grating shapes on the absorption performance of the thin-film silicon solar cell is discussed in this paper. A finite difference time domain method is used to make the numerical simulation. By studying the shape of the triangular grating, the designs of structure are optimized to achieve higher short circuit currents and quantum efficiencies. We find that the blaze grating structure is the ideal initial texture for thin-film solar cells. Compared with the triangular grating, the short circuit current of the blaze grating is improved by 7.09% for the entire spectrum. The short circuit current for the short wavelength is increased by 13.5% whereas the short circuit current in the red and infrared part of spectrum is increased by 86.5%.
机译:本文讨论了不同三角光栅形状对薄膜硅太阳能电池吸收性能的影响。有限差分时间域方法用于进行数值模拟。通过研究三角光栅的形状,优化结构的设计,以实现更高的短路电流和量子效率。我们发现Blaze光栅结构是薄膜太阳能电池的理想初始纹理。与三角光栅相比,整个光谱的发光光栅的短路电流提高了7.09%。短波长的短路电流增加了13.5%,而频谱的红色和红外部分的短路电流增加了86.5%。

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