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首页> 外文期刊>Indian Journal of Physics >Comparative study of asymmetric versus symmetric planar slab dielectric optical waveguides
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Comparative study of asymmetric versus symmetric planar slab dielectric optical waveguides

机译:非对称与对称平面平板电介质光波导的比较研究

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摘要

In this paper we have studied the asymmetric versus symmetric planar waveguide in terms of their usefulness in optical fiber communication systems. We have explored the thin waveguide versus thick waveguide first. Later on usefulness of asymmetric versus symmetric waveguide is carried out to target for WDM optical network application. All kinds of optical network components are fabricated on Si substrate with the point of view of their application. Here asymmetric planar structure may be more useful compared to symmetric waveguide in terms of their non-uniform power confinement properties. However, the symmetric waveguide structure may be more useful for their high power confinement properties. It is well known that the thin symmetric waveguide supports at least one mode. However the thick waveguide may support many even as well as odd modes. We study the power confinement properties for symmetric as well as asymmetric waveguide structure. We conclude that higher order modes show the nonlinear power variations. Mode field profile for various cases is discussed as well. Comparative study between asymmetric versus symmetric waveguide has a lot of significance in optical network area. It has been shown through analysis that in asymmetric waveguide, the power flows more through film region in the case of fundamental mode. Power confinement properties for asymmetric waveguide versus symmetric waveguide have been studied.
机译:在本文中,我们研究了非对称与对称平面波导在光纤通信系统中的实用性。我们首先研究了薄波导与厚波导。后来,针对WDM光网络应用进行了非对称与对称波导的有用性研究。从其应用的角度来看,各种光网络组件都在Si基板上制造。就对称波导的非均匀功率限制特性而言,与对称波导相比,此处的非对称平面结构可能更有用。但是,对称波导结构因其高功率限制特性而可能更为有用。众所周知,细对称波导支持至少一种模式。但是,厚波导可以支持许多偶数和奇数模。我们研究对称和非对称波导结构的功率限制特性。我们得出结论,高阶模显示非线性功率变化。还讨论了各种情况下的模式字段配置文件。非对称波导与对称波导的比较研究在光网络领域具有重要意义。通过分析表明,在非对称波导中,在基本模式下,功率更多地流经薄膜区域。研究了非对称波导与对称波导的功率限制特性。

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