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Reconfigurable Inter-Core Signal Switching Within Multicore Fibers Based on Long-Period Gratings

机译:基于长周期光栅的多芯光纤内可重配置的芯间信号交换

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摘要

For future-oriented space-division multiplexing (SDM) networks based on multicore fibers (MCFs), intentional inter-core signal coupling and reconfigurable switching are desired to transfer signals between cores and establish various network topologies. In this paper, we inscribed long-period gratings (LPGs) into the MCF using the programmable electrical arc discharge (EAD) method. When the MCF is held straight, the LPGs initiate resonations between core modes and cladding modes for each individual core, with the signals at certain wavelengths transferred among cores through shared cladding modes. When the MCF-LPG is directionally bent, the inter-core power coupling is blocked due to the bending loss. We realized efficient power coupling among three ambient cores in a seven-core fiber at the C-band. The minimum end-to-end insertion loss is 11.3 dB, including that of the fan-in/fan-out multiplexers, and the maximum extinction ratio between the switching ON/OFF states is 39 dB. A six-wavelength SDM coherent transmission system is established to evaluate the performance of signal switching, with each wavelength channel modulated with a 224 Gb/s 16QAM-OFDM signal. The transmission results validate that all spatial output ports have good performances in both switching states, which indicates that reconfigurable inter-core signal switching is feasible for enabling flexible network functions within MCFs.
机译:对于基于多核光纤(MCF)的面向未来的空分复用(SDM)网络,需要有意识的核间信号耦合和可重新配置交换,以在核之间传输信号并建立各种网络拓扑。在本文中,我们使用可编程电弧放电(EAD)方法将长周期光栅(LPG)刻入了MCF中。当MCF保持笔直时,LPG会针对每个单独的纤芯在纤芯模式和包层模式之间引发谐振,某些波长的信号会通过共享包层模式在纤芯之间传输。当MCF-LPG定向弯曲时,由于弯曲损耗,芯间功率耦合被阻止。我们实现了C波段七芯光纤中三个环境芯之间的高效功率耦合。最小的端到端插入损耗为11.3 dB,包括扇入/扇出多路复用器的损耗,并且开/关状态之间的最大消光比为39 dB。建立了六波长SDM相干传输系统,以评估信号切换的性能,每个波长信道均以224 Gb / s的16QAM-OFDM信号进行调制。传输结果验证了所有空间输出端口在两种交换状态下均具有良好的性能,这表明可重配置的核心间信号交换对于在MCF中启用灵活的网络功能是可行的。

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