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Modeling of the refractive index and extinction coefficient of binary composite films

机译:二元复合膜的折射率和消光系数建模

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摘要

Southwell's analysis of optical multilayers within the limits of very thin films has been extended to include absorption in the multilayer for predicting the effective values of the refractive index n_(e) and extinction coefficient k_(e) of mixed-composition binary homogeneous films over a wide spectral region, including the high-absorption (k>10~(-2)) region. It has been found that n_(e) in general is a complicated function of the optical parameters (n_(1), k_(1), n_(2), k_(2)) and volume fractions (f_(1), f_(2)) of the component materials in a homogeneous layer, and the expression for n_(e) becomes the same as that predicted by the Drude model in the spectral region where the layers are transparent. Moreover, according to the present analysis, the volume fractions of the product of the refractive index and the extinction coefficient of the component materials of a binary composite film are additive and the sum equals the product of the effective refractive index and extinction coefficient of the composite film.
机译:索斯韦尔(Southwell)对非常薄的薄膜范围内的光学多层膜的分析已扩展为包括多层膜中的吸收,以预测混合成分二元均质膜在a上的折射率n_(e)和消光系数k_(e)的有效值。宽光谱区域,包括高吸收(k> 10〜(-2))区域。已经发现n_(e)通常是光学参数(n_(1),k_(1),n_(2),k_(2))和体积分数(f_(1),f_ (2))在均匀层中组成材料,并且n_(e)的表达式变得与Drude模型在层透明的光谱区域中预测的表达式相同。此外,根据目前的分析,二元复合膜的折射率与消光系数乘积的体积分数是累加的,其总和等于复合材料的有效折射率与消光系数的乘积电影。

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