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Effective medium theories for composite optical materials in spectral ranges of weak absorption: the case of Nb2O5-SiO2 mixtures

机译:复合光学材料在弱吸收光谱范围内的有效介质理论:Nb2O5-SiO2混合物的情况

摘要

The validity of effective medium theories (EMTs) for mixtures of dielectric materials in weak absorption regions is studied. Based on the Bergman spectral representation, it is possible to show that for any EMT the absorption properties of a mixture consist basically of scaling of the absorption properties of the material with highest absorption. The real part of the dielectric function remains unaffected by the absorption properties. Thin films consisting of Nb2O5– SiO2 mixtures are characterized using optical measurements and the results are compared with the calculations of EMTs. The large discrepancies between the absorption properties observed experimentally and those calculated using EMTs are justified by the failure of these theories to predict a compositional dependence of relevant structural parameters, such as the band-gap energy or the width of localized states. This failure, however, affects the calculation of the refractive index in the weak absorption regions to a less significant degree.
机译:研究了弱吸收区中介电材料混合物的有效介质理论(EMT)的有效性。基于Bergman光谱表示,可以表明,对于任何EMT,混合物的吸收特性基本上都由具有最高吸收率的材料的吸收特性定标组成。介电函数的实部不受吸收特性的影响。由Nb2O5-SiO2混合物组成的薄膜通过光学测量来表征,并将结果与​​EMT的计算结果进行比较。这些理论未能预测相关结构参数(如带隙能量或局域宽度)的成分依赖性,证明了实验观察到的吸收性能与使用EMT计算的吸收性能之间的巨大差异。但是,这种失败会在较小的程度上影响弱吸收区域中折射率的计算。

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