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区分周期性纹理化薄硅吸收体中的法布里-珀罗共振与导模共振。

Distinguishing Fabry-Perot from guided resonances in thin periodically-textured silicon absorbers.

作者信息

Ahmadpanahi H, Vismara R, Isabella O, Zeman M

出版信息

Opt Express. 2018 Sep 3;26(18):A737-A749. doi: 10.1364/OE.26.00A737.

DOI:10.1364/OE.26.00A737
PMID:30184833
Abstract

Periodic texturing is one of the main techniques for light-trapping in thin-film solar cells. Periodicity allows for the excitation of guided modes in the structure and, thus, largely enhances absorption. Understanding how much a guided resonance can increase the absorption is therefore of great importance. There is a common method to understand if an absorption peak is due to the excitation of a guided mode, using dispersion diagrams. In such graphs, a resonance is identified as the intersection of a guided-mode-line of a uniform waveguide (with the same optical thickness as the grating structure) with the center of a Brillouin zone of the grating. This method is unfortunately not reliable when the grating height is comparable with the thickness of the wave-guide, or when the thickness of the wave-guide is much larger than the wavelength. In this work, we provide a novel approach to calculate the contribution of a guided resonance to the total absorption in a periodic waveguide, without using the dispersion diagram. In this method, the total electric field in the periodic structure is described by its spatial frequencies, using a Fourier expansion. Fourier coefficients of the electric field were used to calculate the absorption of each diffraction order of the grating. Rigorous numerical calculations are provided to support our theoretical approach. This work paves the way for a deeper understanding of light behavior inside a periodic structure and, consequently, for developing more efficient light-trapping techniques for solar cells applications.

摘要

周期性纹理化是薄膜太阳能电池中光捕获的主要技术之一。周期性能够激发结构中的导模,从而极大地增强吸收。因此,了解导模共振能在多大程度上增加吸收至关重要。有一种常用方法,即利用色散图来判断吸收峰是否源于导模的激发。在这类图表中,共振被确定为均匀波导(与光栅结构具有相同光学厚度)的导模线与光栅布里渊区中心的交点。然而,当光栅高度与波导厚度相当,或者波导厚度远大于波长时,这种方法就不可靠了。在这项工作中,我们提供了一种新颖的方法来计算周期性波导中导模共振对总吸收的贡献,而无需使用色散图。在该方法中,利用傅里叶展开通过空间频率来描述周期性结构中的总电场。电场的傅里叶系数用于计算光栅各衍射级的吸收。通过严格的数值计算来支持我们的理论方法。这项工作为更深入理解周期性结构内的光行为,进而为开发用于太阳能电池应用的更高效光捕获技术铺平了道路。

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