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首页> 外文期刊>Journal of Lightwave Technology >Simultaneous suppression of third-order dispersion and sideband instability in single-channel optical fiber transmission by midway optical phase conjugation employing higher order dispersion management
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Simultaneous suppression of third-order dispersion and sideband instability in single-channel optical fiber transmission by midway optical phase conjugation employing higher order dispersion management

机译:通过采用高阶色散管理的中途光学相位共轭,同时抑制单通道光纤传输中的三阶色散和边带不稳定性

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摘要

In optical phase conjugation (OPC) systems, the third-order dispersion (TOD) of optical fibers and the nonlinear resonance at well-defined signal sideband frequencies called sideband instability (SI) mainly limit the transmission performance. We propose, for the first time, a scheme for simultaneous suppression of both TOD and SI in OPC systems using a periodic higher order dispersion-managed link consisting of standard single-mode fibers (SMFs) and reverse dispersion fibers (RDFs). Computer simulation results demonstrate the possibility of 200-Gb/s data transmission over 10 000 km in the higher order dispersion-managed OPC system, where the dispersion map is optimized by our system design strategies.
机译:在光相位共轭(OPC)系统中,光纤的三阶色散(TOD)和在定义明确的信号边带频率(称为边带不稳定性(SI))下的非线性谐振主要限制了传输性能。我们首次提出了一种使用标准单模光纤(SMF)和反向色散光纤(RDF)组成的周期性高阶色散管理链路同时抑制OPC系统中TOD和SI的方案。计算机仿真结果表明,在更高阶色散管理的OPC系统中,在10000 km内可以进行200 Gb / s的数据传输,其中色散图通过我们的系统设计策略进行了优化。

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