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Electromagnetic reprogrammable coding-metasurface holograms

机译:电磁可重编程编码元全息图

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摘要

Metasurfaces have enabled a plethora of emerging functions within an ultrathin dimension, paving way towards flat and highly integrated photonic devices. Despite the rapid progress in this area, simultaneous realization of reconfigurability, high efficiency, and full control over the phase and amplitude of scattered light is posing a great challenge. Here, we try to tackle this challenge by introducing the concept of a reprogrammable hologram based on 1-bit coding metasurfaces. The state of each unit cell of the coding metasurface can be switched between ‘1’ and ‘0’ by electrically controlling the loaded diodes. Our proof-of-concept experiments show that multiple desired holographic images can be realized in real time with only a single coding metasurface. The proposed reprogrammable hologram may be a key in enabling future intelligent devices with reconfigurable and programmable functionalities that may lead to advances in a variety of applications such as microscopy, display, security, data storage, and information processing.
机译:超表面在超薄尺寸内实现了众多新兴功能,为平坦和高度集成的光子器件铺平了道路。尽管在该领域取得了快速的进展,但同时实现可重构性,高效率以及对散射光的相位和幅度的完全控制仍是一个巨大的挑战。在这里,我们尝试通过引入基于1位编码元表面的可重编程全息图的概念来应对这一挑战。通过电气控制加载的二极管,可以在“ 1”和“ 0”之间切换编码超表面的每个单位单元的状态。我们的概念验证实验表明,只需一个编码超表面即可实时实现多个所需的全息图像。所提出的可重编程全息图可能是启用具有可重配置和可编程功能的未来智能设备的关键,这可能会导致诸如显微镜,显示,安全性,数据存储和信息处理等各种应用的进步。

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