太赫兹辐射
波前
宽带
光学
物理
谐振器
光电子学
超材料
材料科学
计算机科学
可重构性
梁(结构)
波前传感器
相(物质)
灵活性(工程)
波导管
基点
全息术
光子学
反射(计算机编程)
传输(电信)
分裂环谐振器
作者
Ruifan Huang,Shangchu Shi,Meng Sun,Rui Yang,Yizhen Lin,Mingzhong Wu,M. -Zheng Zhang,Sergey Maksimenko,Xunjun He
出处
期刊:Nanomaterials
[Multidisciplinary Digital Publishing Institute]
日期:2026-03-09
卷期号:16 (5): 338-338
摘要
Dynamic wavefront control plays a crucial role in advancing terahertz (THz) high-precision non-destructive testing, wireless communication and high-resolution imaging. However, existing approaches to THz dynamic wavefront control suffer from inherent limitations, such complex structures, narrow operational bandwidth, and the ability to tune only a single function, significantly restricting their practical applications. To overcome these challenges, we propose a dynamic reflective THz metasurface based on nested split-ring unit cells. The nested unit cell consists of an outer double-split VO2 ring resonator and an inner single-split aluminum ring deposited on a central VO2 circular patch. By, respectively, rotating the inner and outer rings in the insulator and metal states of VO2, independent full 2π phase coverage at 1.07 THz can be achieved in both VO2 states while maintaining high polarization-conversion efficiency with a PCR exceeding 0.98, thereby enabling efficient dynamic wavefront control. Using these unit cells, we constructed three distinct reflective metasurfaces that, respectively, generate broadband focusing beams with tunable focal lengths, broadband vortex beams with different topological charges, and a broadband beam that can be switched between focusing and vortex modes by changing the state of VO2. The design offers considerable flexibility for developing compact, multifunctional THz devices, with promising potential for integrated THz systems, high-capacity communications, and high-resolution imaging.
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