论文标题

用于动态图像显示和信息加密的相位变换元信息

Phase-change metasurfaces for dynamic image display and information encryption

论文作者

Liu, Tingting, Han, Zhou, Duan, Junyi, Xiao, Shuyuan

论文摘要

光学元面允许在前所未有的水平上设计电磁空间并控制光传播,从而提供了一种强大的工具,可以在多个物理尺寸上实现光的调制。在这里,我们演示了一个SB $ _ {2} $ S $ _ {3} $ phase-change metasurface平台,该平台允许对振幅和相位进行主动操纵。特别是,我们通过此相变材料的调整结晶级别实现动态纳米刺和全息图像。 SB $ _ {2} $ s $ _ {3} $ nanobricks量身定制,以发挥振幅,几何和传播阶段调制,构成了多路复用元图中的动态元原子。将事件极化作为解码键,可以将编码的信息重现为近场的Naonprinting灰度图像,并在远场中复制两个全息图像。这些图像可以通过利用SB $ _ {2} $ S $ _ {3} $纳米结构之间的可逆可调性来打开和关闭。提出的带有多种信息和多胎加密的相变元面积有望具有高容量和高安全性的超型数据存储,这为现代密码学和安全应用程序提供了令人兴奋的方向。

Optical metasurfaces enable to engineer the electromagnetic space and control light propagation at an unprecedented level, offering a powerful tool to achieve modulation of light over multiple physical dimensions. Here, we demonstrate a Sb$_{2}$S$_{3}$ phase-change metasurface platform that allows active manipulation of both amplitude and phase. In particular, we implement dynamic nanoprinting and holographic image display through tuning crystallization levels of this phase-change material. The Sb$_{2}$S$_{3}$ nanobricks tailored to function the amplitude, geometric and propagation phase modulation constitute the dynamic meta-atoms in the multiplexed metasurfaces. Using the incident polarizations as decoding keys, the encoded information can be reproduced into a naonprinting grayscale image in the near field and two holographic images in the far field. These images can be switched on and off by taking advantages of the reversible tunability of Sb$_{2}$S$_{3}$ nanostructure between amorphous and crystalline states. The proposed phase-change metasurfaces featuring manifold information and multifold encryption promise ultracompact data storage with high capacity and high security, which suggests an exciting direction for modern cryptography and security applications.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源