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Influence of the symmetry rules for Raman susceptibility on the accuracy of nonlinear index measurements in optical fibers

机译:拉曼敏感性对称规则对光纤非线性指数测量精度的影响

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A general expression for a nonlinear polarization in fibers, in which the different symmetry rules for the electronic and Raman contributions to the susceptibility are taken into account, is derived. The contribution of the Raman effect to the total nonlinearity is calculated for different polarizations of a pump and the Stokes wave in polarization-maintaining fibers as well as in fibers with randomly varying birefringence. The error in the measurements of the nz coefficient caused by the different symmetry rules for the Raman and electronic contributions is shown to depend on germanium concentration and a frequency shift varying from 3.3% in polarization-maintaining fibers to 10% in fibers with random birefringence. The ratio between cross-phase modulation and self-modulation strengths strongly depends on a frequency shift and the polarization state of the interacting waves and varies from 1.2 to 2 in fibers with germanium concentration from 0 to 18 mol.%. (C) 2001 Optical Society of America. [References: 37]
机译:得出了光纤中非线性极化的一般表达式,其中考虑了电子和拉曼对磁化率贡献的不同对称规则。对于保持偏振的光纤以及具有随机变化的双折射的光纤,计算了泵的不同偏振和斯托克斯波的拉曼效应对总非线性的贡献。拉曼光谱和电子贡献的不同对称规则导致的nz系数的测量误差表明,取决于锗浓度和频移,从保偏光纤中的3.3%到随机双折射光纤中的10%不等。交叉相位调制强度和自调制强度之间的比率在很大程度上取决于频移和相互作用波的偏振状态,并且在锗浓度为0至18 mol。%的光纤中,其变化范围为1.2至2。 (C)2001年美国眼镜学会。 [参考:37]

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