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用双曲线超材料扭曲光线。

Twisting light with hyperbolic metamaterials.

作者信息

Sun Jingbo, Zeng Jinwei, Litchinitser Natalia M

机构信息

Department of Electrical Engineering, The State University of New York at Buffalo, Buffalo, NY 14260, USA.

出版信息

Opt Express. 2013 Jun 17;21(12):14975-81. doi: 10.1364/OE.21.014975.

Abstract

We propose a novel, miniaturized astigmatic optical element based on a single biaxial hyperbolic metamaterial that enables the conversion of Hermite-Gaussian beams into vortex beams carrying an orbital angular momentum and vice versa. As an example, we design a biaxial anisotropic metamaterial that introduces a π/2 phase shift between two orthogonal components of a Hermite-Gaussian beam due to the optical path difference and at the same time astigmatically focuses these orthogonal components such that they recombine in a symmetric Laguerre-Gaussian beam. We design the proposed device using an array of silver nanowires in an MgF(2) matrix. The advantages of the proposed approach over the existing bulk optics based techniques include compactness and therefore, compatibility with ultra-compact opto-electronic circuits, potential re-configurability and an increased tolerance to misalignment.

摘要

我们提出了一种基于单轴双曲超材料的新型小型化像散光学元件,它能够将厄米-高斯光束转换为携带轨道角动量的涡旋光束,反之亦然。例如,我们设计了一种双轴各向异性超材料,由于光程差,它会在厄米-高斯光束的两个正交分量之间引入π/2的相位偏移,同时像散聚焦这些正交分量,使它们重新组合成对称的拉盖尔-高斯光束。我们使用MgF₂矩阵中的银纳米线阵列设计了所提出的器件。与现有的基于体光学的技术相比,该方法的优点包括紧凑性,因此与超紧凑光电电路兼容、具有潜在的可重新配置性以及对失准的耐受性增加。

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