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Clock Recovery and Demultiplexing of High-Speed OTDM Signal Through Combined Use of Bismuth Oxide Nonlinear Fiber and Erbium-Doped Bismuth Oxide Fiber

机译:结合使用氧化铋非线性光纤和掺B氧化铋光纤的高速OTDM信号的时钟恢复和解复用

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摘要

We explore the ultimate potential offered by state-of-the-art Bismuth oxide-based optical fiber technology in a high-speed optical phase-locked loop-based clock recovery subsystem for an optical time-division multiplexed (OTDM) signal, in which the use of optical fiber-based devices has been considered to be inappropriate due to its tight requirement of short optical loop length. Here, we experimentally demonstrate the implementation of a compact all-fiber-based OTDM receiver incorporating both clock recovery and demultiplexing functions by use of short lengths of Bismuth oxide-based nonlinear fiber and erbium-doped Bismuth oxide fiber. Successful clock recovery and subsequent error-free demultiplexing are readily achieved at a data rate of 80 Gb/s. The clock recovery subsystem is also shown to be operable at 160 Gb/s.
机译:我们探索基于先进的基于氧化铋的光纤技术在高速光锁相环时钟恢复子系统中为光时分复用(OTDM)信号提供的最终潜力,其中由于对光纤环路长度的严格要求,基于光纤的设备的使用被认为是不合适的。在这里,我们通过实验证明了紧凑型全光纤OTDM接收器的实现,该接收器通过使用短长度的氧化铋基非线性光纤和掺er氧化铋光纤结合了时钟恢复和解复用功能。以80 Gb / s的数据速率可以轻松实现成功的时钟恢复和随后的无错解复用。时钟恢复子系统也显示为以160 Gb / s的速度运行。

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