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Transmission systems based on dispersion-managed solitons: theory and experiment

机译:基于色散管理孤子的传输系统:理论与实验

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The propagation of solitons in a dispersion managed link can be mainly modeled with the evolution of two parameters #gamma# and C, related to the spectral width and the chirp. Steady propagations are shown to be possible if the average dispersion lies in the anomalous domain. With the same conditions, periodical propagations are both theoretically and experimentally demonstrated. With the help of a perturbation theory, the jitter and the signal to noise ratio are theoretically evaluated. The latter is experimentally shown to be the low powr limit of terrestrical systems based on non dispersion shifted fiber. In addition, soliton interaction is theoretically investigated and shown to be the upper power limit of terrestrical systems based on non dispersion shifted fiber. Finally, wavelength and power margins of a single channel 20 Gbit/s soliton transmission over 11 amplifier spans of 102 km are presented. With a proper third-order chromatic dispersion management, 1 Tbit/s should be transmitted over 1,000 km.
机译:孤子在色散管理链路中的传播可以主要通过两个参数#gamma#和C的演化来建模,这两个参数与频谱宽度和the有关。如果平均色散位于异常域中,则表明有可能进行稳定传播。在相同条件下,理论上和实验上都证明了周期性传播。借助微扰理论,从理论上评估了抖动和信噪比。后者在实验上被证明是基于非色散位移光纤的地面系统的低功率极限。此外,理论上研究了孤子相互作用,这是基于非色散位移光纤的地面系统的功率上限。最后,给出了在11个102 km的放大器跨度上单通道20 Gbit / s孤子传输的波长和功率裕度。如果使用适当的三阶色散管理,则应在1,000 km上传输1 Tbit / s。

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