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Fiber Fuse Propagation and Its Suppression in Hole-Assisted Fibers

机译:空穴辅助光纤中的光纤熔丝传播及其抑制

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摘要

We examined the characteristics of fiber fuse propagation in hole-assisted fibers (HAF). The fiber fuse propagated in the same way as in conventional single-mode fiber (SMF) when the diameter of an inscribed circle linking the air holes (c) was much larger than the diameter of the melted area (D_(melted)). The melted area is caused by fiber fuse propagation and D_(melted) is assumed to be almost the same size as the plasma. However, when c was much smaller than D_(melted), the fiber fuse did not propagate in HAF with input powers above 15 W at 1480 and 1550 nm. This result indicates that the threshold power of fiber fuse propagation in HAF can be at least 10 times larger than that in conventional SMF in the optical communication band. We also observed the dynamics of fiber fuse termination at a splice point between HAF and a conventional fiber by using a high-speed camera, when c was much smaller than D_(melted). We consider that the reduction in gas density caused by the air holes results in fiber fuse termination. When c was almost the same as D_(melted), we observed a new propagation mode and its dynamics for a fiber fuse with a damage track whose period was approximately 30 times longer than that in conventional SMF. We also made the first observation of a new threshold power (upper threshold) for a fiber fuse.
机译:我们研究了光纤熔丝在空穴辅助光纤(HAF)中的传播特性。当连接气孔(c)的内接圆的直径远大于熔化区域的直径(D_(熔化的))时,光纤熔丝以与传统单模光纤(SMF)相同的方式传播。熔化区域是由光纤熔丝的传播引起的,D_(熔化)的大小几乎与等离子体的大小相同。但是,当c远小于D_(熔化)时,在1480和1550 nm处输入功率超过15 W的情况下,光纤熔丝不会在HAF中传播。该结果表明,在光通信频带中,HAF中光纤熔断器传播的阈值功率可以比传统SMF中的至少大10倍。当c远小于D_(熔化)时,我们还通过使用高速摄像机观察了HAF与常规光纤之间的熔接点处的光纤熔断器端接的动力学情况。我们认为由气孔引起的气体密度降低会导致光纤熔断器端接。当c与D_(熔化)几乎相同时,我们观察到具有损坏轨迹的光纤熔丝的新传播模式及其动力学,其周期比传统SMF长约30倍。我们还首次观察到光纤熔断器的新阈值功率(上阈值)。

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