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Use of polarization freedom beyond polarization-division multiplexing to support high-speed and spectral-efficient data transmission

机译:利用极化自由度(除了极化-分区复用之外)来支持高速和频谱有效的数据传输

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摘要

Increasing the system capacity and spectral efficiency (SE) per unit bandwidth is one of the ultimate goals for data network designers, especially when using technologies compatible with current embedded fiber infrastructures. Among these, the polarization-division-multiplexing (PDM) scheme, which supports two independent data channels on a single wavelength with orthogonal polarization states, has become a standard one in most state-of-art telecommunication systems. Currently, however, only two polarization states (that is, PDM) can be used, setting a barrier for further SE improvement. Assisted by coherent detection and digital signal processing, we propose and experimentally demonstrate a scheme for pseudo-PDM of four states (PPDM-4) by manipulation of four linearly polarized data channels with the same wavelength. Without any modification of the fiber link, we successfully transmit a 100-Gb s−1 PPDM-4 differential-phase-shift-keying signal over a 150-km single-mode fiber link. Such a method is expected to open new possibilities to fully explore the use of polarization freedom for capacity and SE improvement over existing fiber systems.
机译:数据网络设计人员的最终目标之一就是提高系统容量和每带宽的频谱效率(SE),这尤其是在使用与当前嵌入式光纤基础架构兼容的技术时。其中,偏振分割复用(PDM)方案已在大多数先进的电信系统中成为标准方案,该方案在具有正交偏振态的单个波长上支持两个独立的数据信道。但是,目前只能使用两种极化状态(即PDM),这为进一步改善SE设置了障碍。在相干检测和数字信号处理的协助下,我们提出并通过实验证明了通过操纵四个具有相同波长的线性偏振数据通道来对四种状态的伪PDM(PPDM-4)进行处理的方案。在不对光纤链路进行任何修改的情况下,我们成功地在150公里的单模光纤链路上传输了100 Gb s -1 PPDM-4差分相移键控信号。预计这种方法将开辟新的可能性,以全面探索偏振自由度在现有光纤系统上的容量和SE改善的用途。

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