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采用反向锥度法实现负曲率空心光纤与传统单模光纤之间的超低损耗熔接。

Ultralow-loss fusion splicing between negative curvature hollow-core fibers and conventional SMFs with a reverse-tapering method.

作者信息

Wang Caoyuan, Yu Ruowei, Debord Benoît, Gérôme Frédéric, Benabid Fetah, Chiang Kin Seng, Xiao Limin

出版信息

Opt Express. 2021 Jul 5;29(14):22470-22478. doi: 10.1364/OE.432147.

Abstract

Negative curvature hollow-core fibers (NC-HCFs) can boost the excellent performance of HCFs in terms of propagation loss, nonlinearity, and latency, while retaining large core and delicate cladding structures, which makes them distinctly different from conventional fibers. Construction of low-loss all-fiber NC-HCF architecture with conventional single-mode fibers (SMFs) is important for various applications. Here we demonstrate an efficient and reliable fusion splicing method to achieve low-loss connection between a NC-HCF and a conventional SMF. By controlling the mode-field profile of the SMF with a two-step reverse-tapering method, we realize a record-low insertion loss of 0.88 dB for a SMF/NC-HCF/SMF chain at 1310 nm. Our method is simple, effective, and reliable, compared with those methods that rely on intermediate bridging elements, such as graded-index fibers, and can greatly facilitate the integration of NC-HCFs and promote more advanced applications with such fibers.

摘要

负曲率空心光纤(NC-HCFs)在传输损耗、非线性和延迟方面能够提升空心光纤的卓越性能,同时保留大芯径和精细的包层结构,这使得它们与传统光纤明显不同。构建具有传统单模光纤(SMFs)的低损耗全光纤NC-HCF架构对于各种应用而言至关重要。在此,我们展示了一种高效且可靠的熔接方法,以实现NC-HCF与传统SMF之间的低损耗连接。通过采用两步反向锥化方法控制SMF的模场分布,我们在1310 nm波长下实现了SMF/NC-HCF/SMF链的创纪录低插入损耗0.88 dB。与那些依赖诸如渐变折射率光纤等中间桥接元件的方法相比,我们的方法简单、有效且可靠,并且能够极大地促进NC-HCF的集成,并推动使用此类光纤的更先进应用。

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