Chang Yin-Jung, Chen Yu-Ting
Department of Optics and Photonics National Central University, Jhongli, 32001, Taiwan.
Opt Express. 2011 Jul 4;19 Suppl 4:A875-87. doi: 10.1364/OE.19.00A875.
Broadband omnidirectional antireflection (AR) coatings for solar cells optimized using simulated annealing (SA) algorithm incorporated with the solar (irradiance) spectrum at Earth's surface (AM1.57 radiation) are described. Material dispersions and reflections from the planar backside metal are considered in the rigorous electromagnetic calculations. Optimized AR coatings for bulk crystalline Si and thin-film CuIn(1-x)GaxSe(2) (CIGS) solar cells as two representative cases are presented and the effect of solar spectrum in the AR coating designs is investigated. In general, the angle-averaged reflectance of a solar-spectrum-incorporated AR design is shown to be smaller and more uniform in the spectral range with relatively stronger solar irradiance. By incorporating the transparent conductive and buffer layers as part of the AR coating in CIGS solar cells (2μm-thick CIGS layer), a single MgF(2) layer could provide an average reflectance of 8.46% for wavelengths ranging from 350 nm to 1200 nm and incident angles from 0° to 80°.
描述了使用模拟退火(SA)算法并结合地球表面太阳(辐照度)光谱(AM1.57辐射)对太阳能电池进行优化的宽带全向抗反射(AR)涂层。在严格的电磁计算中考虑了材料色散和平面背面金属的反射。给出了作为两个代表性案例的块状晶体硅和薄膜铜铟镓硒(CIGS)太阳能电池的优化AR涂层,并研究了太阳光谱在AR涂层设计中的作用。一般来说,在具有相对较强太阳辐照度的光谱范围内,结合太阳光谱的AR设计的角度平均反射率显示出更小且更均匀。通过将透明导电层和缓冲层作为CIGS太阳能电池(2μm厚的CIGS层)中AR涂层的一部分,单个MgF₂层对于波长范围从350nm至1200nm以及入射角从0°至80°的情况可提供8.46%的平均反射率。