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Refractive index profile modelling of dielectric inhomogeneous coatings using effective medium theories

机译:利用有效介质理论对电介质不均匀涂层的折射率分布进行建模

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The coatings having refractive index changing with the thickness present interesting optical performance, improved mechanical properties and smaller light scattering in comparison with classical multilayer stacks. Lot of theoretical work and experimental advances have been done for designing and production of mixture layers with such particular performances. The effective refractive index of the mixture coatings can be calculated by the use of effective medium theories. The refractive index profile characterization of inhomogeneous films that are mixtures of SiO_2 and Nb_2O_5 is presented. The composition is linearly changed through the thickness of the layers. Ex-situ spectrophotometric measurements, i.e. reflectance and transmittance at different incidence angles, are used for the precise characterization of the refractive index profiles. Linear, Maxwell-Garnet, Bruggeman and Lorentz-Lorenz effective medium theories are applied and quality and differences of the results are studied and analyzed. It is shown that the Lorentz-Lorenz model is the most appropriate for the given mixture, suggesting components are well mixed and there are no separated phases.
机译:与经典的多层堆叠相比,折射率随厚度变化的涂层具有令人感兴趣的光学性能,改善的机械性能和较小的光散射。对于具有这种特殊性能的混合物层的设计和生产,已经进行了大量的理论工作和实验进展。可以通过使用有效的介质理论来计算混合物涂层的有效折射率。提出了SiO_2和Nb_2O_5混合物的非均质薄膜的折射率分布特征。组成随层的厚度线性变化。异地分光光度法测量,即在不同入射角下的反射率和透射率,用于精确表征折射率分布。应用了线性,麦克斯韦-加内特,布鲁格曼和洛伦兹-洛伦茨的有效介质理论,并对结果的质量和差异进行了分析。结果表明,Lorentz-Lorenz模型最适合给定的混合物,这表明各组分充分混合并且没有分离的相。

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