Analysis and evaluation of various optical waveguide grating couplers for integrated optics

S. Ponmalar, S. Sundaravadivelu, L. Suresh
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Abstract

The photonic integrated circuits can be designed by analyzing optical waveguide structures with different types of gratings. The periodic coupling is analyzed for these waveguide structures using coupled mode theory, for both phase matched and non-phase matched conditions. The variations of coupling lengths based on refractive indices differences, operating wavelengths and separation between waveguides are analyzed and obtained the results. The difficulties of integrating the available optical components, which are in all fiber form, in photonic integrated circuits are conquered by these couplers. Integrated optics provides a solution to integrating these components on a single substrate, which miniaturizes the component. By analyzing different waveguide structures, components like optical couplers, wavelength filters, power dividers, polarization transformers etc. can be designed. This paper proposes rectangular, triangular and sinusoidal ridge waveguide structures that act as optical couplers, which provide better coupling efficiency
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集成光学中各种光波导光栅耦合器的分析与评价
通过分析具有不同类型光栅的光波导结构,可以设计光子集成电路。在相位匹配和非相位匹配条件下,利用耦合模式理论分析了这些波导结构的周期耦合。分析了耦合长度随折射率差、工作波长和波导间距的变化规律。这些耦合器克服了在光子集成电路中集成所有光纤形式的现有光学元件的困难。集成光学提供了一种解决方案,将这些组件集成在单个基板上,从而使组件小型化。通过分析不同的波导结构,可以设计光耦合器、波长滤波器、功率分压器、极化变压器等器件。本文提出了矩形、三角形和正弦脊波导结构作为光耦合器,具有较好的耦合效率
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