The impact of XPM on the microwave photonic switching with NOLM is analyzed by the split-step Fourier method (SSFM) that can solve the coupled nonlinear Schrodinger equation (CNLSE). The simulation results show th...The impact of XPM on the microwave photonic switching with NOLM is analyzed by the split-step Fourier method (SSFM) that can solve the coupled nonlinear Schrodinger equation (CNLSE). The simulation results show that XPM induces the distortion of waveforms and the leak of side lobes. And the larger the modulation bandwidth is, the larger the leak of side lobes is. Furthermore, the power transmission function of NOLM T is distorted because of the XPM-induced nonreciprocity: Tm decreases when the splitting ratio of the coupler f∈(0,0.5) and increases when f∈(0.5,1.0).展开更多
基金This research is supported by the National Science Foundation ofChina (No. 60272048)the Special Science Foundation for the Excellent Teacher Lecturer of Shanghai.
文摘The impact of XPM on the microwave photonic switching with NOLM is analyzed by the split-step Fourier method (SSFM) that can solve the coupled nonlinear Schrodinger equation (CNLSE). The simulation results show that XPM induces the distortion of waveforms and the leak of side lobes. And the larger the modulation bandwidth is, the larger the leak of side lobes is. Furthermore, the power transmission function of NOLM T is distorted because of the XPM-induced nonreciprocity: Tm decreases when the splitting ratio of the coupler f∈(0,0.5) and increases when f∈(0.5,1.0).