可重构性
全息术
编码(社会科学)
计算机科学
光学
物理
实现(概率)
光子学
概念证明
计算机硬件
光电子学
材料科学
电信
数学
统计
操作系统
作者
Lianlin Li,Tie Jun Cui,Wei Ji,Shuo Liu,Jun Ding,Xiang Wan,Yun Bo Li,Menghua Jiang,Cheng‐Wei Qiu,Shuang Zhang
标识
DOI:10.1038/s41467-017-00164-9
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.Realizing metasurfaces with reconfigurability, high efficiency, and control over phase and amplitude is a challenge. Here, Li et al. introduce a reprogrammable hologram based on a 1-bit coding metasurface, where the state of each unit cell of the coding metasurface can be switched electrically.
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