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Overcoming temporal polarization instabilities from the latent birefringence in all-normal dispersion wave-breaking-extended nonlinear fiber supercontinuum generation

机译:从全法向色散破波扩展的非线性光纤超连续谱产生中的潜在双折射克服时间偏振不稳定性

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摘要

The intrinsic weak birefringence in all-normal dispersion highly nonlinear fiber, particularly ultra-high-numerical-aperture fiber, generates supercontinuum with long term polarization instabilities, even for seed pulses launched along the perceived slow axis of the fiber. Highly co/anti-correlated fluctuations in energy between regions of power spectral density mask the extent of the spectral noise in total integrated power measurements. The instability exhibits a seed pulse power threshold above which the output polarization state of the supercontinuum seeds from noise. Eliminating this instability through the utilization of nonlinear fiber with a large designed birefringence, encourages the exploration of compression schemes and seed sources. Here, we include an analysis of the difficulties for seeding supercontinuum with the highly attractive ANDi-type lasers. Lastly, we introduce an intuitive approach for understanding supercontinuum development and evolution. By modifying the traditional characteristic dispersion and nonlinear lengths to track pulse properties within the nonlinear fiber, we find simple, descriptive handles for supercontinuum evolution.
机译:在所有正常色散高度非线性的光纤中,特别是在超高数值孔径的光纤中,固有的弱双折射会产生具有长期偏振不稳定性的超连续谱,即使对于沿着光纤慢轴发射的种子脉冲也是如此。功率谱密度区域之间能量的高度共/反相关的波动掩盖了总积分功率测量中频谱噪声的程度。不稳定性表现出种子脉冲功率阈值,高于该阈值时,来自噪声的超连续谱种子的输出极化状态。通过利用具有大设计双折射的非线性光纤来消除这种不稳定性,鼓励探索压缩方案和种子源。在这里,我们分析了使用极具吸引力的ANDi型激光器播种超连续谱的困难。最后,我们引入一种直观的方法来理解超连续谱的发展和演变。通过修改传统的特征色散和非线性长度以跟踪非线性光纤内的脉冲特性,我们找到了用于超连续谱演化的简单描述性句柄。

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