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Gaussian-beam mode analysis of reflection and transmission in multilayer dielectrics

机译:多层介质中反射和透射的高斯光束模式分析

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The analysis of reflections from thin films or dielectric materials can be approached by a matrix method that treats any thin-layer device as a cascade of sequential, zero-thickness reflecting thin-layer surfaces [J. Opt. Soc. Am. A 2, 1363 (1985)]. Our paper presents an alternative method for predicting the reflection/transmission characteristics of such dielectric films in a Fabry-Perot interferometer configuration based on a Gaussian-beam modal analysis within a scattering-matrix framework [in Proceedings of IEE 7th International Conference on Antennas and Propagation (IEE, 1991), Issue 15, p. 201.] We present and validate a scalar Gaussian-beam modal scattering-matrix approach using long-wavelength examples, where diffraction effects are important to model total transmission and reflection characteristics that also include a waveguide modal description of a corrugated horn. For optical beams the same technique is equally applicable, but diffraction is less severe within this framework. This approach is flexible and has many applications within laser optics and in far-infrared or submillimeter-instrumentation optical analysis, where it is possible to incorporate reflections in both waveguide and free space within the description of a whole system. To conclude and verify the accuracy of the technique, experimental measurements taken at 94 GHz are compared with theoretical predictions for a dielectric cavity of polyethylene sheets between corrugated source and detector antennas.
机译:薄膜或介电材料反射的分析可以通过矩阵方法来进行,该方法将任何薄层设备视为一系列连续的零厚度反射薄层表面[J]。选择。 Soc。上午。 A 2,1363(1985)]。我们的论文提出了一种在散射矩阵框架内基于高斯光束模态分析预测法布里-珀罗干涉仪结构中此类介电膜的反射/透射特性的替代方法[在IEE第七届国际天线与传播国际会议论文集中(IEE,1991年),第15期,第1页。 201.]我们使用长波长示例提出并验证了标量高斯光束模态散射矩阵方法,其中衍射效应对于模拟总透射和反射特性非常重要,其中还包括波纹状喇叭的波导模态描述。对于光束,同样的技术同样适用,但在此框架内衍射的严重性较小。这种方法是灵活的,并且在激光光学以及远红外或亚毫米级仪器的光学分析中有许多应用,其中可以在整个系统的描述中将反射合并到波导和自由空间中。为了得出结论并验证该技术的准确性,将在94 GHz处进行的实验测量与在波纹源天线和检测器天线之间的聚乙烯片的介电腔的理论预测进行了比较。

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