贝塞尔光束
太赫兹辐射
贝塞尔函数
光学
梁(结构)
物理
无线
光束转向
调制(音乐)
旋转(数学)
方位角
功率(物理)
相位调制
电子工程
相(物质)
无线电源传输
计算机科学
电介质
光束直径
电信
调幅
自由度(物理和化学)
信号(编程语言)
无线电频率
频率调制
多径传播
天线(收音机)
面子(社会学概念)
光束
干扰(通信)
工程类
相对相位
作者
Haifeng Xu,Jierong Cheng,Shanshan Zhao,Shengnan Guan,Fan Li,Xianghui Wang,Fei Fan,Shengjiang Chang,Haifeng Xu,Jierong Cheng,Shanshan Zhao,Shengnan Guan,Fan Li,Xianghui Wang,Fei Fan,Shengjiang Chang
标识
DOI:10.1002/lpor.202501805
摘要
ABSTRACT Bessel beams, renowned for their non‐diffracting and self‐healing capabilities, are emerging as a compelling candidate for next‐generation wireless signal transmission, especially in near‐field terahertz systems. Bilayer dielectric metasurfaces with relative in‐plane rotation have been extensively explored for dynamic beam steering, offering advantages such as light weight, low power consumption, and large apertures. However, they still face challenges in controlling additional degrees of freedom beyond beam direction. Here, we propose a novel approach using three cascaded metasurfaces, each integrating multiple phase functions, to achieve 4D Bessel beam steering. By relative rotation among the three layers, we demonstrate independent control over non‐diffracting propagation distance, dynamic switching between 0th‐ and 1st‐order Bessel beams, 360° azimuthal scanning, and ±40° elevational scanning. Experimental results confirm the meta‐device's effectiveness in variable‐distance point‐to‐point near‐field wireless communications and the self‐healing properties. This advancement in multi‐dimensional modulation of Bessel beams is crucial for near‐field mobile communications with increased information capacity.
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