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Comparative analysis of absorbance calculations for integrated optical waveguide configurations by use of the ray optics model and the electromagnetic wave theory

机译:使用射线光学模型和电磁波理论对集成光波导配置的吸光度计算进行比较分析

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摘要

Focusing on the use of planar waveguides as platforms for highly sensitive attenuated total reflection spectroscopy of organic thin films, we extend the ray optics model to provide absorbance expressions for the case of dichroic layers immobilized on the waveguide surface. Straightforward expressions are derived for the limiting case of weakly absorbing, anisotropically oriented molecules in the waveguide-cladding region. The second major focus is on the accuracy of the ray optics model. This model assumes that the introduction of absorbing species, either in the bulk cladding or as an adlayer on the waveguide surface, only causes a small perturbation to the original waveguide-mode profile. We investigate the accuracy of this assumption and the conditions under which it is valid. A comparison to an exact calculation by use of the electromagnetic wave theory is implemented, and the discrepancy of the ray optics model is determined for various waveguide configurations. We find that in typical situations in which waveguide-absorbance measurements are used to study organic thin films (k_(l)_(l)≤10~(-1), h/λ≈10~(-2)) the discrepancy between the ray optics and the exact calculations is only a few percent (2-3%).
机译:着重于将平面波导用作有机薄膜的高灵敏度衰减全反射光谱的平台,我们扩展了射线光学模型以提供固定在波导表面上的二向色层情况下的吸光度表达式。对于波导包层区域中弱吸收的各向异性取向的分子的极限情况,可以得出简单的表达式。第二个主要重点是射线光学模型的准确性。该模型假设吸收物质的引入,无论是在整体包层中还是作为波导表面上的附加层,都只会对原始的波导模式轮廓产生很小的扰动。我们研究了此假设的准确性及其有效条件。进行了与使用电磁波理论的精确计算的比较,并确定了各种波导配置的射线光学模型的差异。我们发现,在典型情况下,使用波导吸收率测量来研究有机薄膜(k_(l)/ n_(l)≤10〜(-1),h /λ≈10〜(-2))之间的差异射线光学器件和精确计算之间的差异仅为百分之几(2-3%)。

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