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Analysis of the light trapping effect on the performance of silicon-based solar cells: absorption enhancement

机译:捕获光对硅基太阳能电池性能的影响:吸收增强

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Nowadays, there is a great interest in discovering alternative approaches to reduce the cost per the output power of first generation crystalline silicon solar cells. Light propagation in solar cells is controlled by interaction between periodic structure filters and light. Therefore, designing ultrathin solar cells in which light is trapped in the active layer is so important to efficiently absorb the light. In the present paper, the combination of a distributed Bragg reflector (DBR) with a rectangular-or triangular-shaped grating is introduced as a photonic backside filter for both TE and TM polarizations. It is shown that by applying this DBR with a triangular grating, it is possible to enhance the efficiency of crystalline solar cells up to 20% for 2.5 mu m Si cells in TE-polarized incident light. By optimizing the shape of the grating, the efficiencies can be increased to 22.1% and 23.52% in 5 mu m and 7.5 mu m Si solar cells for TE-polarized incident light, respectively. Similar results have been achieved for TM-polarized incident light. In addition, introducing rectangular or triangular grating structures improves light trapping over the solar spectrum from 400 to 1100 nm which is revealed by calculation of the electric field. The triangular-shaped gratings are an effective approach for light trapping in thin crystalline solar cells and will inspire low-cost high-efficiency solar cell designs. Finally, efficiency as a function of angle of incidence of light for a triangular grating has been obtained. Finding results in this work show promise for designing ultrathin solar cells with enhanced light absorption. (C) 2015 Optical Society of America
机译:如今,人们对寻找替代方法以降低第一代晶体硅太阳能电池每单位输出功率的成本非常感兴趣。太阳能电池中的光传播是通过周期性结构滤镜和光之间的相互作用来控制的。因此,设计其中将光捕获在有源层中的超薄太阳能电池对于有效吸收光非常重要。在本文中,引入了分布式布拉格反射器(DBR)与矩形或三角形光栅的组合作为TE和TM偏振的光子背面滤波器。已经表明,通过将该DBR与三角光栅一起使用,对于TE偏振入射光中的2.5μmSi电池,可以将晶体太阳能电池的效率提高高达20%。通过优化光栅的形状,在用于TE偏振入射光的5微米和7.5微米硅太阳能电池中,效率可以分别提高到22.1%和23.52%。对于TM偏振入射光也获得了类似的结果。此外,引入矩形或三角形光栅结构可改善从400到1100 nm的太阳光谱上的光捕获,这可以通过计算电场来揭示。三角形光栅是用于捕集薄晶体太阳能电池中光的有效方法,并将激发低成本高效太阳能电池的设计。最终,获得了作为三角光栅的光的入射角的函数的效率。在这项工作中发现的结果显示出设计具有增强的光吸收能力的超薄太阳能电池的希望。 (C)2015年美国眼镜学会

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