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首页> 外文期刊>Selected Topics in Quantum Electronics, IEEE Journal of >Design and Analysis of Optical Coupling Between Silicon Nanophotonic Waveguide and Standard Single-Mode Fiber Using an Integrated Asymmetric Super-GRIN Lens
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Design and Analysis of Optical Coupling Between Silicon Nanophotonic Waveguide and Standard Single-Mode Fiber Using an Integrated Asymmetric Super-GRIN Lens

机译:集成非对称Super-GRIN透镜的硅纳米光子波导与标准单模光纤之间光耦合的设计和分析

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摘要

Comprehensive design and analysis of optical coupling between silicon nanophotonic waveguide and standard single-mode fiber is presented. The coupling structure employs an integrated asymmetric graded refractive index (GRIN) lens deposited at the end of the tapered waveguide, and the GRIN lens has an optimized refractive index profile with a super high numerical aperture for aberration-free subwavelength focusing/collimating. The influence of end-facet reflection of the GRIN lens on the coupling efficiency is investigated. The optimized GRIN lens with a proper antireflection coating shows a coupling efficiency of ∼90% between a 300-nm-thick silicon nanophotonic waveguide and a standard single-mode fiber. A 3-D modeling and simulation of the GRIN lens is carried out. The influences of fiber displacement and angular misalignment on the coupling efficiency are analyzed. The overall systematic design and analysis indicate that this integrated GRIN-lens-based optical coupler offers a compact and efficient solution for nanophotonic waveguide coupling with a good alignment tolerance.
机译:提出了硅纳米光子波导与标准单模光纤之间光耦合的综合设计和分析。耦合结构采用了沉积在锥形波导末端的集成非对称渐变折射率(GRIN)透镜,并且GRIN透镜具有优化的折射率分布,具有超高数值孔径,可实现无像差的亚波长聚焦/准直。研究了GRIN透镜端面反射对耦合效率的影响。具有适当抗反射涂层的优化GRIN透镜在300nm厚的硅纳米光子波导与标准单模光纤之间的耦合效率约为90%。对GRIN透镜进行了3-D建模和仿真。分析了光纤位移和角度失准对耦合效率的影响。总体系统设计和分析表明,这种基于GRIN透镜的集成光耦合器为纳米光子波导耦合提供了紧凑且有效的解决方案,并具有良好的对准公差。

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