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Field-trial of an all-optical PSK regenerator/multicaster in a 40 Gbit/s, 38 channel DWDM transmission experiment

机译:在40 Gbit / s,38通道DWDm传输实验中对全光psK再生器/多播器进行现场试验

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摘要

The performance of future ultra-long haul communication systems exploiting phase-encoded signals is likely to be compromised by noise generated during signal transmission. One potential way to mitigate such noise is to use Phase Sensitive Amplifiers (PSAs) which have been demonstrated to help remove phase as well as amplitude noise from phase-encoded signals. Recently, we showed that a PSA-based signal regenerator based on degenerate four-wave mixing can be implemented in a network-compatible manner in which only the (noisy) signal is present at the device input (black-box operation). The developed regenerator was also able to perform simultaneous wavelength conversion and multicasting, details/analysis of which are presented herein. However, this scheme was tested only with artificial noise generated in the laboratory and with the regenerator placed in front of the receiver, rather than in-line where even greater performance benefits are to be expected. Here, we address both theoretically and experimentally the important issue of how such a regenerator, operating for convenience in a multicasting mode, performs as an in-line device in an installed transmission fiber link. We also investigate the dispersion tolerance of the approach.
机译:未来利用相位编码信号的超长距离通信系统的性能可能会受到信号传输过程中产生的噪声的影响。减轻此类噪声的一种潜在方法是使用相位敏感放大器(PSA),该放大器已被证明可帮助从相位编码信号中消除相位和幅度噪声。最近,我们表明可以以网络兼容的方式实现基于简并四波混频的基于PSA的信号再生器,其中在设备输入端仅出现(噪声)信号(黑盒操作)。开发的再生器还能够执行同时的波长转换和多播,其详细信息/分析在此处介绍。但是,仅在实验室产生的人工噪声以及将再生器放置在接收器前方的情况下,才对该方案进行了测试,而在预期会有更大性能收益的情况下,则没有进行在线测试。在这里,我们在理论上和实验上都解决了这样一个重要问题:在多播模式下为方便起见,这种再生器如何在已安装的传输光纤链路中充当串联设备。我们还研究了该方法的色散容限。

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