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Modeling Self-Similar Optical Pulse Compression in Nonlinear Fiber Bragg Grating Using Coupled-Mode Equations

机译:使用耦合模式方程建模非线性光纤布拉格光栅中的自相似光脉冲压缩

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摘要

Nearly pedestal-free optical pulse compression using self-similar chirped optical solitons near the photonic bandgap (PBG) structure of nonlinear fiber Bragg gratings (NFBGs) with exponentially decreasing dispersion is investigated using the generalized nonlinear coupled-mode equations (NLCMEs). The full dispersion characteristics and the effect of PBG are included. We find that the ratio of the frequency detune of the pulse's center frequency from the Bragg frequency of the NFBG to coupling coefficient of the NFBG is an important design parameter of the NFBG optical pulse compressor. We carried out a comprehensive study on the effect of the ratio of frequency detune to coupling coefficient, grating length, initial chirp, initial dispersion, and initial pulsewidth on the self-similar optical pulse compression. We also studied the compression of both the hyperbolic secant and Gaussian-shaped pulses and the effect of variation in the initial pulsewidth on the optical pulse compression.
机译:使用广义非线性耦合模式方程(NLCME),研究了色散呈指数递减的非线性光纤布拉格光栅(NFBG)的光子带隙(PBG)结构附近的自相似chi光学孤子的近无基座光脉冲压缩。包括了全分散特性和PBG的效果。我们发现,脉冲中心频率从NFBG的布拉格频率的失谐频率与NFBG的耦合系数之比是NFBG光脉冲压缩器的重要设计参数。我们对频率失谐与耦合系数的比率,光栅长度,初始,、初始色散和初始脉冲宽度对自相似光脉冲压缩的影响进行了全面研究。我们还研究了双曲线割线和高斯形脉冲的压缩以及初始脉冲宽度变化对光脉冲压缩的影响。

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