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CLEO?/Europe-EQEC 2017, one page summary template: Optical vortex induction via light - matter interaction in liquid-crystal media

机译:Cleo ? /欧洲-eqec 2017,一页摘要模板:通过液晶介质中的灯具相互作用光学涡流诱导

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摘要

Optical vortices are attracting much attention because of their applications in various fields of optical processing, communications, enhanced imaging systems, and bio-inspired devices [1]. Different methods to generate optical vortices have been devised to date. Among them, several are based on the exploitation of light-matter interaction in liquid-crystal media. We focus on the main mechanisms of vortex generation in liquid crystals, in particular on vortex generation induced by umbilics, that is, defects arising in homeotropically aligned nematic cells, which act as topological matter templates able to realize the conversion from spin to orbital angular momentum of an incoming Gaussian beam [2-3]. Optical vortex induction in a photosensitive light valve is presented as a self-stabilizing mechanism leading to reconfigurable and programmable vortex arrays. On each lattice site, every matter vortex acts as a photonic spin-to-orbital momentum coupler, converting input arrays of circularly polarized beams into output arrays of vortex beams with topological charges consistent with the matter lattice symmetry.
机译:由于它们在不同领域的光学处理,通信,增强的成像系统和生物启发设备[1]中,光学涡旋是巨大的关注。迄今为止已经设计了生成光学涡旋的不同方法。其中,有几个基于液晶介质中的光物质相互作用的利用。我们专注于液晶涡流生成的主要机制,特别是脐带菌诱导的涡流产生,即在官期性化对齐的向列细胞中产生的缺陷,其充当拓扑物质模板,能够实现从旋转到轨道角度的转化术传入高斯梁[2-3]。光敏光阀中的光学涡流诱导作为可重新配置和可编程涡流阵列的自稳定机构。在每个晶格网站上,每个物质涡流用作光子旋转到轨道动量耦合器,将圆偏振光束的输入阵列转换成具有与物质晶格对称的拓扑电荷的涡流束的输出阵列。

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