首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Nonlinear polarization dynamics of counterpropagating waves in an isotropic optical fiber: theory and experiments
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Nonlinear polarization dynamics of counterpropagating waves in an isotropic optical fiber: theory and experiments

机译:各向同性光纤中反向传播波的非线性偏振动力学:理论与实验

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The nonlinear interaction between two intense counterpropagating laser beams in an isotropic optical fiber may lead to spatiotemporal polarization instabilities of both waves. Experiments with various mutual polarization arrangements and different powers of the two counterpropagating input beams showed that nonlinear birefringence may lead to significant polarization cross switching of both beams. In the case of two counterrotating circular input waves, the cross-polarization interaction of the beams led to the generation of a polarization kink or domain wall soliton. This soliton is formed by a superposition of counterpropagating waves that represent switching of the state of polarization of light between two domains where both waves are circularly polarized and corotating. The experimental observations are found to be in good agreement with the theoretical predictions. (C) 2001 Optical Society of America. [References: 38]
机译:在各向同性光纤中,两个强烈的反向传播激光束之间的非线性相互作用可能导致两个波的时空偏振不稳定性。在两个相互传播的输入光束具有各种互偏光布置和不同功率的实验中,非线性双折射可能会导致两个光束发生明显的偏振交叉转换。在两个反向旋转的圆形输入波的情况下,光束的交叉极化相互作用导致极化扭结或畴壁孤子的产生。该孤子是由反向传播波的叠加形成的,该反向传播波表示两个波场都是圆偏振并同向旋转的两个畴之间的光的偏振状态的切换。实验观察结果与理论预测吻合良好。 (C)2001年美国眼镜学会。 [参考:38]

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