首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Experimental investigation on the polarization evolution characteristics of arbitrary cylindrical vector beams in uniaxial crystals orthogonal to the optical axis
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Experimental investigation on the polarization evolution characteristics of arbitrary cylindrical vector beams in uniaxial crystals orthogonal to the optical axis

机译:单轴晶体垂直于光轴的任意圆柱形束偏振变化特性的实验研究

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摘要

The propagation properties of a variety of laser beams in uniaxial crystals are extensively investigated by numerical simulations. However, the related experimental demonstrations are sporadic up to now. Herein, we report an experimental investigation of the polarization characteristics of arbitrary cylindrical vector beams (i.e., radially polarized beam, azimuthally polarized beam, high-order vector beam, and fractional vector beam) passing through a ruffle crystal whose optical axis is orthogonal to the beam axis. It is shown that the polarization modulation of the uniaxial crystal results in the polarization evolution of cylindrical vector beams from the localized linear polarization to hybrid polarization with 2m-fold rotational symmetry (where m is the topological charge), which agrees well the theoretical result. The polarization modulation using the uniaxial crystal has the applications in the generation of complex vector beams and the material characterization.
机译:通过数值模拟广泛地研究了单轴晶体中各种激光束的传播特性。 然而,相关的实验示范现在是现在的零星。 在此,我们报告了通过缠绕轴晶体的圆柱形晶体的任意圆柱形矢量梁(即,径向偏振梁,方位角偏振束,高阶偏振梁,高阶矢量梁和分数矢量梁)的实验研究。 梁轴。 结果表明,单轴晶体的偏振调制导致圆柱形矢量梁的偏振演化从局部线性偏振与2m倍的旋转对称(其中M是拓扑电荷)的混合偏振,这吻合了理论结果。 使用单轴晶体的偏振调制具有在复杂向量梁的产生中的应用和材料表征。

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