从集成光子电路到用于太空应用的光纤设计的微透镜耦合器

Chengtao Xu, Jayaprakash B. Shivakumar, Eduardo Rojas
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引用次数: 0

摘要

本研究提出了一种新颖的微透镜耦合器设计,用于将光从直波导传输到单模光纤(SMF)。与边缘耦合相比,我们的设计结合了改进的模式匹配和增强的对准容差。通过评估在不同程度的制造误差下的耦合效率,对对准容差进行了研究。我们在设计中加入了单透镜和衍射透镜,以将光线精确聚焦到光纤中。综合模拟证明,衍射透镜的耦合效率优于边缘耦合和单透镜。我们还讨论了未来的制造方法,如增材制造。我们的研究结果强调了创新微透镜耦合器设计在推进自由空间光通信(FSOC)系统方面的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microlens Coupler from Integrated Photonic Circuit to Fiber Design for Space Application
This study presents a novel design for a microlens coupler to transfer light from a straight waveguide to a single-mode fiber (SMF). Our design combines improved mode matching and enhanced alignment tolerance compared to edge coupling. An investigation of the alignment tolerance is done by assessing coupling efficiency under various degrees of manufacturing-induced misalignment. Singlet and diffractive lenses are incorporated into our design to focus the light into the fiber precisely. Comprehensive simulations demonstrate that the diffractive lens outperforms edge coupling and singlet lens in coupling efficiency. Fabrication methods such as additive manufacturing are discussed for future works. Our findings underscore the potential of innovative microlens coupler design in advancing free space optical communication (FSOC) systems.
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