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Fast and interference fringe independent optical characterization of zinc oxide nano thin films using model-based genetic algorithm for optoelectronic applications

机译:使用基于模型的遗传算法对光电子应用进行氧化锌纳米薄膜的快速和干涉条纹无关的光学表征

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In this article, a model-based genetic algorithm is used to determine the optical properties of nanostructured zinc oxide single-sided nano thin films that does not depend on the interference fringes of optical transmission spectrum. The functional form for refractive index n(??) and absorption coefficient ?±(??) as functions of wavelength instead of randomly organized genes corresponding to the optical parameters are used in the implementation of GA. Using the proposed model for the refractive index dispersion and absorption, the transmittance curves of zinc oxide thin films obtained from optimized parameters are fitted with the original spectrum. The calculated results give us R2 values higher than 0.950. Compared to traditional optimization methods, the fitting error of genetic algorithm is typically smaller. The interference fringes are not critical to perform the genetic algorithm in comparison to the classical methods such as the envelope method. One of the advantages for this technique is its consider...
机译:在本文中,基于模型的遗传算法用于确定纳米结构的氧化锌单面纳米薄膜的光学特性,该光学特性不依赖于光学透射光谱的干涉条纹。在GA的实现中,使用折射率n(λ)和吸收系数λ±(λ)作为波长的函数的函数形式,而不是与光学参数相对应的随机组织的基因。使用所提出的折射率分散和吸收模型,将从最佳参数获得的氧化锌薄膜的透射率曲线与原始光谱拟合。计算结果使我们的R2值高于0.950。与传统的优化方法相比,遗传算法的拟合误差通常较小。与经典方法(例如包络法)相比,干涉条纹对于执行遗传算法不是至关重要的。这种技术的优点之一是它的考虑...

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