Zhang Deming, Vorndran Shelby, Russo Juan M, Gordon Michael, Kostuk Raymond K
Electrical and Computer Engineering Department, University of Arizona, 1230 E Speedway Boulevard, Tucson, Arizona 85721, USA.
Opt Express. 2012 Jun 18;20(13):14260-71. doi: 10.1364/OE.20.014260.
Significant optical absorption enhancement can be achieved by incorporating optical diffusers in the thin-film silicon photovoltaic (PV) cells. Absorption can be increased further by angular and spectral selective filters. In this work the properties of volume reflection holograms are examined for realizing ultra light-trapping filters for thin film silicon photovoltaic cell applications. The filter properties of reflection volume hologram are evaluated for this application. It is found that variation in the refractive index profile as a function of depth is an important factor. The optimized design is implemented in dichromated gelatin holograms and found to be in good agreement with predicted performance. The enhancement to the conversion efficiency of silicon PV cells are predicted with the PC-1D simulation tool and is found to be similar to that with an optimized Rugate filter. The simulated short circuit current density enhancement was found to be 8.2% for a 50 µm thick silicon PV cell and 15.8% for a 10 µm thick silicon PV cell.
通过在薄膜硅光伏(PV)电池中加入光学漫射器,可以实现显著的光吸收增强。通过角度和光谱选择性滤波器可以进一步提高吸收率。在这项工作中,研究了体反射全息图的特性,以实现用于薄膜硅光伏电池应用的超光捕获滤波器。针对此应用评估了反射体全息图的滤波器特性。发现作为深度函数的折射率分布变化是一个重要因素。优化设计在重铬酸盐明胶全息图中实现,并且发现与预测性能良好吻合。使用PC-1D模拟工具预测了硅光伏电池转换效率的提高,并且发现与优化的 Rugate 滤波器的提高相似。对于50 µm厚的硅光伏电池,模拟的短路电流密度增强为8.2%,对于10 µm厚的硅光伏电池为15.8%。