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Numerical Modeling of Sub-Wavelength Anti-Reflective Structures for Solar Module Applications

机译:太阳能组件应用的亚波长抗反射结构的数值建模

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摘要

This paper reviews the current progress in mathematical modeling of anti-reflective subwavelength structures. Methods covered include effective medium theory (EMT), finite-difference time-domain (FDTD), transfer matrix method (TMM), the Fourier modal method (FMM)/rigorous coupled-wave analysis (RCWA) and the finite element method (FEM). Time-based solutions to Maxwell’s equations, such as FDTD, have the benefits of calculating reflectance for multiple wavelengths of light per simulation, but are computationally intensive. Space-discretized methods such as FDTD and FEM output field strength results over the whole geometry and are capable of modeling arbitrary shapes. Frequency-based solutions such as RCWA/FMM and FEM model one wavelength per simulation and are thus able to handle dispersion for regular geometries. Analytical approaches such as TMM are appropriate for very simple thin films. Initial disadvantages such as neglect of dispersion (FDTD), inaccuracy in TM polarization (RCWA), inability to model aperiodic gratings (RCWA), and inaccuracy with metallic materials (FDTD) have been overcome by most modern software. All rigorous numerical methods have accurately predicted the broadband reflection of ideal, graded-index anti-reflective subwavelength structures; ideal structures are tapered nanostructures with periods smaller than the wavelengths of light of interest and lengths that are at least a large portion of the wavelengths considered.
机译:本文综述了抗反射亚波长结构数学建模的最新进展。涵盖的方法包括有效介质理论(EMT),时域有限差分(FDTD),传递矩阵法(TMM),傅立叶模态方法(FMM)/严格耦合波分析(RCWA)和有限元方法(FEM) )。麦克斯韦方程式(例如FDTD)的基于时间的解决方案具有在每次仿真中计算多个波长的光的反射率的好处,但计算量大。诸如FDTD和FEM输出场强之类的空间离散方法可在整个几何结构上产生结果,并且能够对任意形状进行建模。诸如RCWA / FMM和FEM之类的基于频率的解决方案在每次仿真中模拟一个波长,因此能够处理常规几何形状的色散。诸如TMM之类的分析方法适用于非常简单的薄膜。大多数现代软件都克服了最初的缺点,例如忽略色散(FDTD),TM偏振不准确(RCWA),无法建模非周期性光栅(RCWA)以及金属材料不准确(FDTD)。所有严格的数值方法都可以准确地预测理想的渐变折射率减反射亚波长结构的宽带反射。理想的结构是锥形纳米结构,其周期小于感兴趣的光的波长,并且其长度至少是所考虑波长的很大一部分。

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