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On the Tolerance of 111-Gb/s POLMUX-RZ-DQPSK to Nonlinear Transmission Effects

机译:111 Gb / s POLMUX-RZ-DQPSK对非线性传输效应的容忍度

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摘要

In this paper, we experimentally investigate the tolerance of 111-Gb/s polarization multiplexed-return to zero-differential quadrature phase-shift keying (POLMUX-RZ-DQPSK) to the different nonlinear transmission impairments in different links structures. We analyze the effect of dispersion maps for four different fiber types and show that with sufficiently large per-span under-compensation in the double periodic dispersion map, a dispersion managed (DM) link can nearly have a similar performance to a non-DM link. Furthermore, we confirm that the super large effective area fiber family can provide around 3 dB advantage in the tolerance to nonlinear effects compared to standard single-mode fiber. Finally, we demonstrate that interleaving the two polarization tributaries of the 111-Gb/s POLMUX-RZ-DQPSK signal provides only a negligible advantage in terms of tolerance to nonlinear effects.
机译:在本文中,我们通过实验研究了111 Gb / s偏振复用返回零差分正交相移键控(POLMUX-RZ-DQPSK)对不同链路结构中不同非线性传输损伤的容忍度。我们分析了四种不同光纤类型的色散图的影响,并显示出在双周期色散图中具有足够大的每跨欠补偿,色散管理(DM)链路几乎可以具有与非DM链路类似的性能。此外,我们确认,与标准单模光纤相比,超大有效面积光纤系列在非线性影响的容限方面可提供约3 dB的优势。最后,我们证明,将111 Gb / s POLMUX-RZ-DQPSK信号的两个极化支路进行交织,在对非线性影响的容忍度方面仅提供了微不足道的优势。

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