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薄膜光导中的几何光学

Geometrical optics in thin film light guides.

作者信息

Ulrich R, Martin R J

出版信息

Appl Opt. 1971 Sep 1;10(9):2077-85. doi: 10.1364/AO.10.002077.

Abstract

We consider thin film light guides consisting of a transparent film of high refractive index deposited on a substrate of lower index. The propagation of light in such a two-dimensional transmission medium can be described within the limits of geometrical optics by an effective index of refraction N. Its value depends on the film thickness. Therefore, a light beam in the thin film guide is refracted or totally reflected at a step of film thickness. We discuss these phenomena (Snell's law) and demonstrate them experimentally, using ZnS films on glass as guides. As applications, we show a thin film prism and thin film lenses for guided light beams. By properly choosing the film thicknesses at both sides of the step, one can obtain an unusually large positive or negative wavelength dispersion of the refraction or, if desired, achromatic refraction.

摘要

我们考虑由沉积在低折射率衬底上的高折射率透明薄膜构成的薄膜光波导。在这种二维传输介质中,光的传播在几何光学的范围内可以用有效折射率(N)来描述。其值取决于薄膜厚度。因此,薄膜光波导中的光束在薄膜厚度的阶跃处会发生折射或全反射。我们讨论这些现象(斯涅尔定律),并以玻璃上的硫化锌薄膜作为光波导进行实验演示。作为应用,我们展示了用于引导光束的薄膜棱镜和薄膜透镜。通过适当地选择阶跃两侧的薄膜厚度,可以获得异常大的正或负折射波长色散,或者如果需要的话,获得消色差折射。

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