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通过自旋复用反射超表面生成的太赫兹动态多通道全息图。

Terahertz dynamic multichannel holograms generated by spin-multiplexing reflective metasurface.

作者信息

Du Zhiqiang, He Canhui, Xin Jinhao, Song Zhengyong

出版信息

Opt Express. 2024 Jan 1;32(1):248-259. doi: 10.1364/OE.510046.

Abstract

In recent years, metasurfaces have attracted considerable interest for their unprecedented capabilities to manipulate intensity, phase, and polarization of an electromagnetic wave. Although metasurface-based wavefront modulation has achieved numerous successful results, implementation of multifunctional devices in a single metasurface still meet significant challenges. Here, a novel multilayer structure is designed using properties of vanadium dioxide (VO). Propagation phase and geometric phase are introduced in this structure to achieve multichannel holographic imaging in terahertz band. When the temperature is above 68°C, VO becomes a metal and it plays a role in wavefront modulation for terahertz wave. The left-handed channel realizes a hologram letter L and the right-handed channel realizes a hologram letter R. When the temperature is below 68°C, VO changes to an insulator, and electromagnetic wave is controlled by gold structures embedded inside a VO film. In this case, hologram number 2 is realized in the left-handed channel and hologram number 6 appears in the right-handed channel. Our structure has advantages of low crosstalk, multiple channels, and large bandwidth. This novel design paves a new road for multichannel imaging and information encryption.

摘要

近年来,超表面因其操纵电磁波强度、相位和偏振的前所未有的能力而备受关注。尽管基于超表面的波前调制已取得众多成功成果,但在单个超表面中实现多功能器件仍面临重大挑战。在此,利用二氧化钒(VO)的特性设计了一种新型多层结构。该结构引入传播相位和几何相位以实现太赫兹波段的多通道全息成像。当温度高于68°C时,VO变为金属,它在太赫兹波的波前调制中起作用。左旋通道实现全息字母L,右旋通道实现全息字母R。当温度低于68°C时,VO转变为绝缘体,电磁波由嵌入VO薄膜内的金结构控制。在这种情况下,左旋通道实现全息图2,右旋通道出现全息图6。我们的结构具有串扰低、多通道和带宽大的优点。这种新颖的设计为多通道成像和信息加密铺平了一条新道路。

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