宽带
石墨烯
极高频率
光束转向
带宽(计算)
调幅
振幅
光学
太赫兹辐射
可重构天线
梁(结构)
光电子学
材料科学
物理
频率调制
电信
计算机科学
全向天线
天线(收音机)
量子力学
天线效率
作者
Huixia Jiang,Lili Sheng,Yumei Luo,Liang Meng,Weiping Cao
出处
期刊:Materials
[MDPI AG]
日期:2023-06-27
卷期号:16 (13): 4633-4633
被引量:4
摘要
Due to the growing scarcity of spectrum resources in the low-frequency band, the requirement of beam-reconfigurable antennas in the millimeter wave band is urgent. In this paper, a W-band graphene-based metasurface working in a broad bandwidth is proposed with reflective amplitude coding. Here, graphene sheets play a dual role in radiating and regulating electromagnetic waves. By adjusting the Fermi levels of graphene, the reflective amplitude and phase of the metasurface can be modulated simultaneously, enabling multi-beam switching and beam deflection in far-field. The proposed metasurface achieves amplitude-phase modulation within a significantly wide bandwidth which covers 75–91.5 GHz and 99.3–115 GHz. By optimizing the coding patterns, the proposed graphene-based metasurfaces are able to not only realize 2-D beam steering, but also achieve beam switching from single beam to four beams at 87 GHz. The proposed design provides a novel solution for the flexible manipulation of millimeter waves, which can be applied to various fields such as vehicle radar, satellite communication, 6G wireless communication, and beyond.
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