太赫兹辐射
可重构性
杰纳斯
全息术
光学
光电子学
自由度(物理和化学)
超材料
多路复用
物理
材料科学
计算机科学
纳米技术
电信
量子力学
作者
Benwen Chen,Shihe Yang,Jian Chen,Jingbo Wu,Ke Chen,Weili Li,Yihui Tan,Zhaosong Wang,Hongsong Qiu,Kebin Fan,Caihong Zhang,Huabing Wang,Yijun Feng,Yunbin He,Biaobing Jin,Xinglong Wu,Jian Chen,Peiheng Wu
标识
DOI:10.1038/s41377-023-01177-4
摘要
Dynamic manipulation of electromagnetic (EM) waves with multiple degrees of freedom plays an essential role in enhancing information processing. Currently, an enormous challenge is to realize directional terahertz (THz) holography. Recently, it was demonstrated that Janus metasurfaces could produce distinct responses to EM waves from two opposite incident directions, making multiplexed dynamic manipulation of THz waves possible. Herein, we show that thermally activated THz Janus metasurfaces integrating with phase change materials on the meta-atoms can produce asymmetric transmission with the designed phase delays. Such reconfigurable Janus metasurfaces can achieve asymmetric focusing of THz wave and directional THz holography with free-space image projections, and particularly the information can be manipulated via temperature and incident THz wave direction. This work not only offers a common strategy for realizing the reconfigurability of Janus metasurfaces, but also shows possible applications in THz optical information encryption, data storage, and smart windows.
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