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All-optical pulse reshaping and retiming systems incorporating pulse shaping fiber Bragg grating

机译:具有脉冲整形光纤布拉格光栅的全光脉冲整形和重定时系统

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摘要

This paper demonstrates two optical pulse retiming and reshaping systems incorporating superstructured fiber Bragg gratings (SSFBGs) as pulse shaping elements. A rectangular switching window is implemented to avoid conversion of the timing jitter on the original data pulses into pulse amplitude noise at the output of a nonlinear optical switch. In a first configuration, the rectangular pulse generator is used at the (low power) data input to a nonlinear optical loop mirror (NOLM) to perform retiming of an incident noisy data signal using a clean local clock signal to control the switch. In a second configuration, the authors further amplify the data signal and use it to switch a (low power) clean local clock signal. The S-shaped nonlinear characteristic of the NOLM results in this instance in a reduction of both timing and amplitude jitter on the data signal. The underlying technologies required for the implementation of this technique are such that an upgrade of the scheme for the regeneration of ultrahigh bit rate signals at data rates in excess of 320 Gb/s should be achievable.
机译:本文演示了两种将超结构光纤布拉格光栅(SSFBG)作为脉冲整形元件的光脉冲重定时和整形系统。实现矩形切换窗口以避免在非线性光学开关的输出处将原始数据脉冲上的定时抖动转换为脉冲幅度噪声。在第一配置中,在输入到非线性光学环路镜(NOLM)的(低功率)数据下使用矩形脉冲发生器,以使用干净的本地时钟信号来控制入射噪声数据信号的重定时。在第二种配置中,作者进一步放大了数据信号,并使用它来切换(低功率)干净的本地时钟信号。在这种情况下,NORM的S形非线性特性可降低数据信号的时序和幅度抖动。实现该技术所需的基础技术是,应该可以实现对数据速率超过320 Gb / s的超高比特率信号的再生方案的升级。

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