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Catenary optics for achromatic generation of perfect optical angular momentum

机译:悬链光学系统可消色差产生完美的光学角动量

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摘要

The catenary is the curve that a free-hanging chain assumes under its own weight, and thought to be a “true mathematical and mechanical form” in architecture by Robert Hooke in the 1670s, with nevertheless no significant phenomena observed in optics. We show that the optical catenary can serve as a unique building block of metasurfaces to produce continuous and linear phase shift covering [0, 2π], a mission that is extremely difficult if not impossible for state-of-the-art technology. Via catenary arrays, planar optical devices are designed and experimentally characterized to generate various kinds of beams carrying orbital angular momentum (OAM). These devices can operate in an ultra-broadband spectrum because the anisotropic modes associated with the spin-orbit interaction are almost independent of the incident light frequency. By combining the optical and topological characteristics, our approach would allow the complete control of photons within a single nanometric layer.
机译:悬链线是一条自由悬挂的链条在其自身的重量下呈现的曲线,被罗伯特·胡克(Robert Hooke)认为是1670年代建筑中的“真正的数学和机械形式”,然而在光学中却没有观察到明显的现象。我们表明,光学悬链线可以作为超颖表面的独特构建基块,以产生覆盖[0,2π]的连续和线性相移,对于当前最先进的技术而言,这并非是不可能的。通过悬链线阵列,对平面光学器件进行设计和实验表征,以生成携带轨道角动量(OAM)的各种光束。这些设备可以在超宽带频谱中运行,因为与自旋轨道相互作用相关的各向异性模式几乎与入射光频率无关。通过结合光学和拓扑特征,我们的方法将允许对单个纳米层内的光子进行完全控制。

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