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Formation of hybrid higher-order cylindrical vector beams using binary multi-sector phase plates

机译:利用二元多扇区相位板形成混合高阶圆柱矢量光束

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摘要

Nowadays, the well-known cylindrical vector beams (CVBs) – the axially symmetric beam solution to the full-vector electromagnetic wave equation – are widely used for advanced laser material processing, optical manipulation and communication and have a great interest for data storage. Higher-order CVBs with polarisation order greater than one and superpositions of CVBs of various orders (hybrid CVBs) are especially of interest because of their great potential in contemporary optics. We performed a theoretical analysis of the transformation of first-order CVBs (radially and azimuthally polarised beams) into hybrid higher-order ones using phase elements with complex transmission functions in the form of the cosine or sine functions of the azimuthal angle. Binary multi-sector phase plates approximating such transmission functions were fabricated and experimentally investigated. The influence of the number of sectors and a height difference between neighbouring sectors, as well as the energy contribution of the different components in the generated hybrid higher-order CVBs were discussed in the context of polarisation transformation and vector optical field transformation in the focal region. The possibility of polarisation transformation, even in the case of weak focusing, is also demonstrated. The simple structure of the profile of such plates, their high diffraction efficiency and high damage threshold, as well as the easy-to-implement polarisation transformation principle provide advanced opportunities for high-efficient, quickly-switchable dynamic control of the generation of structured laser beams.
机译:如今,众所周知的圆柱矢量光束(CVB)(全矢量电磁波方程的轴向对称光束解决方案)已广泛用于先进的激光材料处理,光学处理和通信,并对数据存储产生了极大的兴趣。偏振阶大于1的高阶CVB和各种阶CVB的叠加(混合CVB)由于其在当代光学领域的巨大潜力而​​特别受到关注。我们使用具有复杂传输函数的相位元素(方位角的余弦或正弦函数形式),对一阶CVB(径向和方位极化光束)转换为混合高阶光束进行了理论分析。制作和实验研究了近似这样的传递函数的二元多扇区相板。在焦点区域的偏振变换和矢量光场变换的背景下,讨论了扇区数和相邻扇区之间的高度差的影响以及生成的混合高阶CVB中不同组件的能量贡献。 。甚至在弱聚焦的情况下,也证明了偏振变换的可能性。这种板的轮廓的简单结构,其高衍射效率和高损伤阈值以及易于实现的偏振变换原理,为高效,可快速切换的结构化激光生成的动态控制提供了高级机会。梁。

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