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Polarization-Encrypted Orbital Angular Momentum Multiplexed Metasurface Holography

机译:偏振加密轨道角动量多路复用质量表面全息术

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摘要

Metasurface holography has the advantage of realizing complex wavefront modulation by thin layers together with the progressive technique of computer-generated holographic imaging. Despite the well-known light parameters, such as amplitude, phase, polarization, and frequency, the orbital angular momentum (OAM) of a beam can be regarded as another degree of freedom. Here, we propose and demonstrate orbital angular momentum multiplexing at different polarization channels using a birefringent metasurface for holographic encryption. The OAM selective holographic information can only be reconstructed with the exact topological charge and a specific polarization state. By using an incident beam with different topological charges as erasers, we mimic a super-resolution case for the reconstructed image, in analogy to the well-known STED technique in microscopy. The combination of multiple polarization channels together with the orbital angular momentum selectivity provides a higher security level for holographic encryption. Such a technique can be applied for beam shaping, optical camouflage, data storage, and dynamic displays.
机译:元接口全息术具有通过薄层实现复杂的波前调制以及计算机生成全息成像的渐进技术。尽管具有众所周知的光参数,例如幅度,相位,极化和频率,但梁的轨道角动量(OAM)可以被视为另一种自由度。在这里,我们使用用于全息加密的双折射元表面来提出并展示在不同偏振通道的轨道角动量。 OAM选择性全息信息只能以精确的拓扑电荷和特定偏振状态重建。通过使用具有不同拓扑电荷作为橡皮擦的入射光梁,我们模拟了重建图像的超分辨率案例,类似于众所周知的显微镜技术中的众所周知的技术。多个偏振通道与轨道角动量选择性一起的组合为全息加密提供了更高的安全水平。这种技术可以应用于光束整形,光学伪装,数据存储和动态显示器。

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