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首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Nonlinear light beam propagation in uniaxial crystals: nonlinear refractive index, self-trapping and self-focusing
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Nonlinear light beam propagation in uniaxial crystals: nonlinear refractive index, self-trapping and self-focusing

机译:单轴晶体中的非线性光束传播:非线性折射率,自陷和自聚焦

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摘要

We derive the nonlinear paraxial wave equation for the propagation of an optical beam in nonlinear anisotropic media with centrosymmetry. As an application of the equation, we obtain the nonlinear refractive index (NRI) in three uniaxial crystals belonging to the symmetry classes 6/mmm of the hexagonal system, 4/mmm of the tetragonal system, and 3-barm of the trigonal system, respectively, and consider the self-trapping and self-focusing of the beam propagating in any direction in these crystals. We conclude that NRI, critical power and self-focusing length are all anisotropic (dependent upon the propagation direction) for an extraordinary light but isotropic for an ordinary light, and that there exists an elliptical self-trapping beam for the extraordinary light.
机译:我们推导了非线性旁轴波方程,用于在中心对称的非线性各向异性介质中传播光束。作为方程的应用,我们获得了六种六角形系统的对称等级分别为6 / mmm,四角形系统的4 / mmm和三角系的3-barm的三种单轴晶体的非线性折射率(NRI),分别考虑在这些晶体中沿任何方向传播的光束的自陷和自聚焦。我们得出的结论是,对于非常规光,NRI,临界功率和自聚焦长度都是各向异性的(取决于传播方向),而对于常规光则是各向同性的,并且对于非常规光存在椭圆形的自陷束。

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