Heine C, Morf R H
Appl Opt. 1995 May 10;34(14):2476-82. doi: 10.1364/AO.34.002476.
Diffractive optical structures for increasing the efficiency of crystalline silicon solar cells are discussed. As a consequence of the indirect band gap, light absorption becomes very ineffective near the band edge. This can be remedied by use of optimized diffraction gratings that lead to light trapping. We present blazed gratings that increase the optically effective cell thickness by approximately a factor of 5. In addition we present a wideband antireflection structure for glass that consists of a diffraction grating with a dielectric overcoat, which leads to an average reflection of less than 0.6% in the wavelength range between 300 and 2100 nm.
讨论了用于提高晶体硅太阳能电池效率的衍射光学结构。由于间接带隙,在带边附近光吸收变得非常低效。这可以通过使用导致光陷获的优化衍射光栅来补救。我们展示了闪耀光栅,其可将光学有效电池厚度增加约5倍。此外,我们还展示了一种用于玻璃的宽带抗反射结构,它由带有介质外涂层的衍射光栅组成,在300至2100nm波长范围内平均反射率小于0.6%。