全息术
光学
多路复用
相(物质)
灵活性(工程)
领域(数学)
物理
振幅
超材料
纳米结构
计算全息
相位控制
相位调制
光电子学
几何相位
计算机科学
空间频率
光场
变换光学
材料科学
全息显示器
频率调制
频率响应
相对相位
平面的
作者
Zi‐Lan Deng,Mingke Jin,Xuan Ye,Shuai Wang,Tan Shi,Junhong Deng,Ningbin Mao,Yaoyu Cao,Bai‐Ou Guan,Andrea Alù,Guixin Li,Xiangping Li
标识
DOI:10.1002/adfm.201910610
摘要
Abstract Phase, polarization, amplitude, and frequency represent the basic dimensions of light, playing crucial roles for both fundamental light–material interactions and all major optical applications. Metasurfaces have emerged as a compact platform to manipulate these knobs, but previous metasurfaces have limited flexibility to simultaneous control them. A multi‐freedom metasurface that can simultaneously and independently modulate phase, polarization, and amplitude in an analytical form is introduced, and frequency multiplexing is further realized by a k ‐space engineering technique. The multi‐freedom metasurface seamlessly combines geometric Pancharatnam–Berry phase and detour phase, both of which are frequency independent. As a result, it allows complex‐amplitude vectorial hologram at various frequencies based on the same design strategy, without sophisticated nanostructure searching of massive geometric parameters. Based on this principle, full‐color complex‐amplitude vectorial meta‐holograms in the visible are experimentally demonstrated with a metal–insulator–metal architecture, unlocking the long‐sought full potential of advanced light field manipulation through ultrathin metasurfaces.
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