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Finite-element analysis of lossy TE-TM modes in metal-clad optical waveguides

机译:金属包覆光波导中有损TE-TM模式的有限元分析

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Finite-element analysis employing the scalar and vector I-I-held formulations and with the aid of the perturbation technique is used to calculate the TE-TM complex propagation characteristics of integrated optical devices in gallium arsenide, lithium niobate, and silica fiber, incorporating a lossy metal cladding. The propagation and attenuation properties of several types of metal-clad planar optical waveguide, which exhibit surface-plasmon properties for the Till polarization, are reviewed, and the modal loss caused by the metal cladding in a titanium-diffused lithium niobate electro-optic directional coupler modulator, an indium gallium arsenide phosphide-based TE-TM optical polarizer, and a submicron metal-clad silica fiber suitable for near-held optical scanning microscopy is calculated. (C) 1998 Optical Society of America. [References: 17]
机译:使用标量和矢量II固定公式并借助扰动技术进行有限元分析,以计算集成光学器件在砷化镓,铌酸锂和石英纤维中的TE-TM复合传播特性,并结合了有损金属覆层。综述了几种类型的金属包覆的平面光波导的传播和衰减特性,这些光波导表现出Till偏振的表面等离激元特性,并讨论了钛扩散铌酸锂电光定向中由金属包覆引起的模态损耗计算出耦合器调制器,磷化铟镓砷基TE-TM光学偏振器和适用于近距离光学扫描显微镜的亚微米金属包覆石英纤维。 (C)1998年美国眼镜学会。 [参考:17]

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