光纤尖端透镜与Micro Fabry Perot多路复用器和多路复用器连接耦合损耗分析

N. Ngajikin, N. M. Daud, Norliza Mohamed, M. Awang, N. Ismail
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引用次数: 1

摘要

光纤尖端透镜技术被用于减少光纤到Micro Fabry Perot Multiplexer (FP MUX)和光纤到Micro Fabry Perot Demultiplexer (FP DEMUX)连接中的耦合损耗。提出了用于FP - MUX耦合连接的凸型光纤尖端透镜和用于FP - DEMUX耦合连接的凹型光纤尖端透镜。建立了半径为50 μm和65 μm的光纤尖端透镜耦合损耗性能的时域有限差分(FDTD)数值模拟模型。在本分析中,将波长从1270 nm到1610 nm的密集波分复用(DWDM)光发射到光纤尖端透镜上,并根据聚焦距离和光束尺寸进行了透镜特性分析。耦合损耗分析表明,在半径为65 μm的凸型和凹型光纤尖端透镜中,耦合损耗分别小于6 nW和0.3 nW。该分析有助于在FP MUX和FP DEMUX连接中以最小的耦合损耗优化透镜配置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coupling loss analysis in fiber tip lens and Micro Fabry Perot Multiplexer and demultiplexer connection
Fiber tip lens technology has been employed to reduce coupling loss in fiber to Micro Fabry Perot Multiplexer (FP MUX) and fiber to Micro Fabry Perot Demultiplexer (FP DEMUX) connection. The convex type of fiber tip lens is proposed for FP MUX coupling connection while the concave type of fiber tip lens for FP DEMUX coupling connection. Finite Difference Time Domain (FDTD) numerical method simulation model for 50 μm and 65 μm radius of fiber tip lens have been developed for coupling loss performance analysis. In this analysis, Dense Wavelength Division Multiplexing (DWDM) light ranging from 1270 nm to 1610 nm wavelength has been launched onto the fiber tip lens and lens characteristic is done in terms of focus distance and beam size. Coupling loss analysis shows extremely low loss has been achieved, which are below 6 nW and 0.3 nW for 65 μm radius of convex and concave type of fiber tip lens respectively. This analysis contributes to an optimal configuration of lens in FP MUX and FP DEMUX connection with minimal coupling loss.
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