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首页> 外文期刊>Journal of Photopolymer Science and Technology >FDTD Analysis for Light Passing Through Glass Substrate and Its Application to Organic Photovoltaics with Moth Eye Antireflection Coating
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FDTD Analysis for Light Passing Through Glass Substrate and Its Application to Organic Photovoltaics with Moth Eye Antireflection Coating

机译:穿过玻璃基板的光的FDTD分析及其在蛾眼抗反射涂层有机光伏中的应用

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To improve the performance of organic photovoltaics (OPVs), it is useful to trap light by using the antireflection nanotexture such as moth eye structure. The finite-difference time-domain (FDTD) method is frequently used to analyze the optical properties of nanotexture. However, in the case that FDTD is applied to OPVs, the existence of a glass substrate generates a strong oscillation in optical response, which does not exist in the actual device. To remove such oscillatory components and accurately simulate optical response, we study an FDTD-based computational algorithm, which we call the envelope method. We compare this method with other possible methods, and demonstrate that the envelope algorithm is more accurate for estimating optical response and more robust against parameter variations than the other ones. We also apply this method to analyze the changes in the OPV performance associated with the changes in the properties of moth eye coating.
机译:为了提高有机光伏(OPV)的性能,使用防反射纳米纹理(例如蛾眼结构)捕获光是有用的。时域有限差分法(FDTD)通常用于分析纳米纹理的光学特性。但是,在将FDTD应用于OPV的情况下,玻璃基板的存在会在光学响应中产生强烈的振荡,这在实际装置中是不存在的。为了消除这种振荡成分并准确模拟光学响应,我们研究了基于FDTD的计算算法,我们将其称为包络法。我们将该方法与其他可能的方法进行了比较,并证明了与其他方法相比,包络算法在估计光学响应方面更准确,并且在参数变化方面更具鲁棒性。我们还应用这种方法来分析与蛾眼涂层特性相关的OPV性能变化。

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