Zhang Zhe, Ding Wei, Jia Anqing, Hong Yifeng, Chen Yi, Sun Yizhi, Gao Shoufei, Huang Sujuan, Wang Yingying
Opt Express. 2022 Apr 25;30(9):15149-15157. doi: 10.1364/OE.456392.
To go beyond the fundamental limits imposed by latency, nonlinearity, and laser damage threshold in silica glass fibers, the hollow-core fiber (HCF) technique has been intensively investigated for decades. Recent breakthroughs in ultralow-loss HCF clearly imply that long-haul applications of HCF in communications and lasers are going to appear. Nevertheless, up to now, the HCF technique as a whole is still hampered by the limited length of a single span and the lack of HCF-based functional devices. To resolve these two issues, it is of importance to develop ultralow-loss and plug-and-play HCF interconnections. In this work, we report on HCF interconnections with the lowest-ever insertion losses (0.10 dB for HCF to standard single-mode fiber (SMF) and 0.13 dB for HCF to itself in the 1.5 µm waveband) and in a pluggable means. Two fiber mode-field adapters, one based on a graded-index multi-mode fiber (GIF) and the other utilizing a thermally expanded core (TEC) SMF, have been tested and compared. An extra insertion loss arising from imperfect refractive index distribution in a commercial GIF is observed. Our HCF interconnections also realize a back-reflection of <-35 dB over a 100 nm bandwidth as well as other critical metrics in favor of practical applications. Our technique is viable for any type of HCF.
为突破石英玻璃光纤中由延迟、非线性和激光损伤阈值所带来的基本限制,中空光纤(HCF)技术已被深入研究了数十年。超低损耗中空光纤的近期突破清楚地表明,中空光纤在通信和激光领域的长途应用即将出现。然而,截至目前,中空光纤技术整体仍受到单段长度有限以及缺乏基于中空光纤的功能器件的阻碍。为解决这两个问题,开发超低损耗且即插即用的中空光纤互连技术至关重要。在这项工作中,我们报道了具有有史以来最低插入损耗(在1.5μm波段,中空光纤与标准单模光纤(SMF)连接时为0.10dB,中空光纤与自身连接时为0.13dB)且采用可插拔方式的中空光纤互连。我们测试并比较了两种光纤模式场适配器,一种基于渐变折射率多模光纤(GIF),另一种采用热膨胀芯(TEC)单模光纤。观察到商用渐变折射率多模光纤中由于折射率分布不完善而产生的额外插入损耗。我们的中空光纤互连在100nm带宽上还实现了小于 -35dB的背向反射以及其他有利于实际应用的关键指标。我们的技术适用于任何类型的中空光纤。