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Modeling and analysis of polarization effects in Fourier domain mode-locked lasers

机译:傅里叶域锁模激光器中偏振效应的建模与分析

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摘要

We develop a theoretical model for Fourier domain mode-locked (FDML) lasers in a non-polarization-maintaining configuration, which is the most widely used type of FDML source. This theoretical approach is applied to analyze a widely wavelength-swept FDML setup, as used for picosecond pulse generation by temporal compression of the sweeps. We demonstrate that good agreement between simulation and experiment can only be obtained by including polarization effects due to fiber bending birefringence, polarization mode dispersion, and cross-phase modulation into the theoretical model. Notably, the polarization dynamics are shown to have a beneficial effect on the instantaneous linewidth, resulting in improved coherence and thus compressibility of the wavelength-swept FDML output. (C) 2015 Optical Society of America
机译:我们为非偏振保持配置中的傅立叶域锁模(FDML)激光器开发了一种理论模型,这是FDML源中使用最广泛的类型。这种理论方法可用于分析广泛的波长扫描FDML设置,该设置用于通过扫描的时间压缩来产生皮秒脉冲。我们证明,只有通过将由于光纤弯曲双折射,偏振模色散和交叉相位调制引起的偏振效应纳入理论模型中,才能获得仿真与实验之间的良好一致性。值得注意的是,偏振动力学显示出对瞬时线宽具有有益的影响,从而提高了相干性,从而改善了波长扫描FDML输出的可压缩性。 (C)2015年美国眼镜学会

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