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Highly integrated planar lightwave circuits based on plasmonic and Si nano-waveguides

机译:基于等离子和硅纳米波导的高度集成的平面光波电路

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Planar lightwave circuits (PLC) based on nanophotonic waveguides are becoming more and more attractive because of their ultrasmall sizes and possibility for realizing large scale monolithic integration with a very high integration density. In this paper we discuss two attractive types of nanophotonic waveguides based on dielectrics or metals. For the dielectric type, a silicon-on-insulator (SOI) strip waveguide is considered, and ultra-compact photonic integrated devices such as polarization-insensitive arrayed waveguide grating (de)multiplexers are obtained. Based on the fact that light can be confined tightly in a single interface between a metal and dielectric, a surface plasmon (SP) waveguide can offer a tight confinement for the light field. The cross-sectional size of an SP waveguide could be pushed down to tens of nanometers, i.e. beyond the diffraction limit. An accurate anaylysis for an SP waveguide formed by a dielectric nano-trench in a metal is presented. A novel subwavelength index-guided multimode plasmonic waveguide is introduced and an ultra-compact MMI power splitter is designed.
机译:基于纳米光子波导的平面光波电路(PLC)变得越来越有吸引力,因为它们的尺寸超小,并且有可能以很高的集成度实现大规模的单片集成。在本文中,我们讨论了两种基于电介质或金属的有吸引力的纳米光子波导类型。对于介电类型,考虑使用绝缘体上硅(SOI)带状波导,并获得超紧凑型光子集成器件,例如偏振不敏感阵列波导光栅(de)多路复用器。基于可以将光紧密地限制在​​金属和电介质之间的单个界面中的事实,表面等离激元(SP)波导可以为光场提供严格的限制。 SP波导的横截面尺寸可以降低到几十纳米,即超过衍射极限。提出了一种由金属中的电介质纳米沟槽形成的SP波导的精确分析方法。介绍了一种新颖的亚波长导引多模等离子体波导,并设计了一种超紧凑的MMI功率分配器。

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