Yu Zongfu, Raman Aaswath, Fan Shanhui
Stanford University, CA 94305 USA.
Opt Express. 2010 Sep 13;18 Suppl 3:A366-80. doi: 10.1364/OE.18.00A366.
We use a rigorous electromagnetic approach to analyze the fundamental limit of light-trapping enhancement in grating structures. This limit can exceed the bulk limit of 4n², but has significant angular dependency. We explicitly show that 2D gratings provide more enhancement than 1D gratings. We also show the effects of the grating profile's symmetry on the absorption enhancement limit. Numerical simulations are applied to support the theory. Our findings provide general guidance for the design of grating structures for light-trapping solar cells.
我们采用一种严谨的电磁方法来分析光栅结构中光捕获增强的基本极限。这个极限可以超过体材料的4n²极限,但具有显著的角度依赖性。我们明确表明,二维光栅比一维光栅提供更多的增强效果。我们还展示了光栅轮廓对称性对吸收增强极限的影响。应用数值模拟来支持该理论。我们的研究结果为用于光捕获太阳能电池的光栅结构设计提供了一般性指导。