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Transmission performance of 10-Gb/s DPSK WDM signals due to phase-error and four-wave mixing in SOAs

机译:SOA中由于相位误差和四波混频而产生的10 Gb / s DPSK WDM信号的传输性能

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摘要

We present a complete dynamic model of semiconductor optical amplifiers (SOAs) including the interchannel four-wave mixing (FWM). The model has been implemented using the time-dependent transfer matrix method (TMM) and applying the discretization scheme in both the spatial and spectral domains. In SOA-based wavelength division multiplexing transmission systems using 10-Gb/s differential phase shift keyed (DPSK) signals, the system performance due to the SOA-induced phase-error and the FWM effect has been analyzed. By the injection of a reservoir channel into SOAs, the transmission performance of non-return-to-zero (NRZ) DPSK signals can be improved through the phase-error reduction. Both the NRZ-DPSK and return-to-zero (RZ) DPSK signals are found to be suffered from the FWM-induced cross-talk. The overall nonlinear tolerance of RZ-DPSK is shown to be better than that of NRZ-DPSK.
机译:我们介绍了包括通道间四波混频(FWM)在内的半导体光放大器(SOA)的完整动态模型。该模型已使用依赖于时间的传输矩阵方法(TMM)并在空间和光谱域中应用了离散化方案来实现。在使用10 Gb / s差分相移键控(DPSK)信号的基于SOA的波分复用传输系统中,已经分析了由于SOA引起的相位误差和FWM效应而引起的系统性能。通过将储层通道注入SOA,可以通过减少相位误差来改善非归零(NRZ)DPSK信号的传输性能。发现NRZ-DPSK和归零(RZ)DPSK信号都受到FWM引起的串扰的影响。结果表明,RZ-DPSK的整体非线性公差要优于NRZ-DPSK。

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