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Near-field collimation of light carrying orbital angular momentum with bull’s-eye-assisted plasmonic coaxial waveguides

机译:具有牛眼辅助等离子体同轴波导的近乎携带轨道角动量的近场准直

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The orbital angular momentum (OAM) of light, as an emerging hotspot in optics and photonics, introduces many degrees of freedom for applications ranging from optical communication and quantum processing to micromanipulation. To achieve a high degree of integration, optical circuits for OAM light are essential, which are, however, challenging in the optical regime owing to the lack of well-developed theory. Here we provide a scheme to guide and collimate the OAM beam at the micro- and nano-levels. The coaxial plasmonic slit was exploited as a naturally occurring waveguide for light carrying OAM. Concentric grooves etched on the output surface of the coaxial waveguide were utilized as a plasmonic metasurface to couple the OAM beam to free space with greatly increased beam directivity. Experimental results at λ?=?532?nm validated the novel transportation and collimating effect of the OAM beam. Furthermore, dynamic tuning of the topological charges was demonstrated by using a liquid crystal spatial light modulator (SLM).
机译:作为光学和光子学中的新出现热点的光的轨道角动量(OAM)引入了从光学通信和量子处理到微操纵的应用程度的许多自由度。为了实现高度的集成度,对于OAM光的光学电路是必不可少的,然而由于由于缺乏良好的理论而在光学方案中挑战。在这里,我们提供了一种方案,用于在微观和纳米水平处引导和充气OAM光束。同轴等离子体狭缝被利用为用于轻型携带烟的天然存在的波导。在同轴波导的输出表面上蚀刻的同心凹槽被用作等离子体元表面,以将OAM光束耦合到自由空间,以大大增加的光束方向性。在λα= 532℃的实验结果验证了OAM光束的新型运输和准直效果。此外,通过使用液晶空间光调制器(SLM)来证明拓扑电荷的动态调谐。

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