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首页> 外文期刊>Journal of optics >Polarization singularities of optical fields caused by structural dislocations in crystals
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Polarization singularities of optical fields caused by structural dislocations in crystals

机译:由晶体中的结构位错引起的光场的偏振奇异性

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摘要

We analyze polarization singularities of optical beams that propagate through crystals possessing structural dislocations. We show that screw dislocations of crystalline structure can lead to the appearance of purely screw-type dislocations of light wavefronts. This can happen only in crystals that belong to trigonal and cubic systems. These polarization singularities will give rise to optical vortices with the topological charge equal to ±1, whenever a crystal sample is placed between crossed circular polarizers. We have also found that edge dislocations present in the cubic and trigonal crystals, with the Burgers vector perpendicular to the three-fold symmetry axes, can impose mixed screw-edge dislocations in the wavefronts of optical beams and generate singly charged optical vortices. The results of our analysis can be applied for detecting and identifying dislocations of different types available in crystals.
机译:我们分析了通过具有结构位错的晶体传播的光束的偏振奇异性。我们表明晶体结构的螺旋位错可以导致光波阵面的纯螺旋型位错的出现。这只能在属于三角和立方系统的晶体中发生。每当将晶体样品放置在交叉的圆偏振器之间时,这些偏振奇异点将引起光学涡旋,其拓扑电荷等于±1。我们还发现,存在于立方晶体和三角形晶体中的边缘位错,使Burgers矢量垂直于三重对称轴,会在光束的波前施加混合的螺旋边缘位错,并产生单电荷的光学涡旋。我们的分析结果可用于检测和识别晶体中可用的不同类型的位错。

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