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Comparison of spectral index, semi-vectorial finite difference and vector finite element methods for the modal analysis of semiconductor optical rib waveguides

机译:光谱指数,半矢量有限差分和矢量有限元方法在半导体光肋波导模态分析中的比较

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Semiconductor rib waveguides, a typical example of which is illustrated, now have various important applications in the field of integrated optics as passive and active devices such as bends, tapers, splitters, routing switches, laser cavities, and modulators. Since the early 1980s, the UK has seen considerable progress in the modal analysis of such waveguiding structures (including directional couplers) by the use of the vector H-field finite element (VFE) method, the semi-vectorial E-field and H-field finite difference (SVFD) methods, and the spectral index (SI) methods. The SI methods, which have been implemented on mainframes and 80286-based PCs (with and without coprocessors), have far more economical computer memory and CPU time requirements than the VFE and SVFD methods which are mainly suitable for use on mainframes, powerful workstations and 80486-based PCs.
机译:现在示出了半导体肋状波导,其典型示例在集成光学领域中作为无源和有源设备(例如弯头,锥度,分离器,路由开关,激光腔和调制器)具有各种重要的应用。自1980年代初以来,英国通过使用矢量H场有限元(VFE)方法,半矢量E场和H-场有限差分(SVFD)方法和光谱指数(SI)方法。 SI方法已在大型机和基于80286的PC(带或不带协处理器)上实现,比VFE和SVFD方法更经济,后者主要适用于大型机,功能强大的工作站和计算机。基于80486的PC。

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