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Nonlinear polarization evolution of hybridly polarized beams by isotropic Kerr nonlinearity

机译:各向同性Kerr非线性混合偏振光束的非线性偏振演化。

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Theoretically, we propose an investigation of the vectorial light field interacting with the isotropic Kerr medium. We obtain the analytical expression of the focal field of the hybrid polarized beam based on the vectorial Rayleigh-Sommerfeld formulas under the paraxial condition. Then we numerically simulate the far-field vectorial self-diffraction behavior and nonlinear ellipse rotation of a hybrid polarized beam by isotropic Kerr nonlinearity. Experimentally, we observe the vectorial self-diffraction behavior of the femtosecond-pulsed hybridly polarized beam in carbon disulfide at 800 ran, which is in agreement with the theoretical predictions. Our results demonstrate that the self-diffraction intensity pattern and the distribution of state of polarization (SoP) of a hybridly polarized beam could be manipulated by tuning the magnitude of the isotropic optical nonlinearity, which may find interesting applications in nonlinear mechanism analysis, nonlinear characterization technique, and spin angular momentum (SAM) manipulation.
机译:从理论上讲,我们提出了与各向同性Kerr介质相互作用的矢量光场的研究。我们基于近轴条件下的矢量Rayleigh-Sommerfeld公式,获得了混合偏振光束焦点的解析表达式。然后,通过各向同性的Kerr非线性数值模拟了混合偏振光束的远场矢量自衍射行为和非线性椭圆旋转。在实验上,我们观察到了飞秒脉冲混合偏振光束在800 ran下在二硫化碳中的矢量自衍射行为,这与理论预测相符。我们的结果表明,可以通过调整各向同性光学非线性的幅度来控制混合偏振光束的自衍射强度模式和偏振态分布(SoP),这可能会在非线性机理分析,非线性表征中找到有趣的应用。技术,以及旋转角动量(SAM)操纵。

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