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基于超薄柔性频率编码超表面的电磁辐射连续操控

Continuous manipulation of electromagnetic radiation based on ultrathin flexible frequency coding metasurface.

作者信息

Jia Min, Zhao Chao, Tang Zhouhao, Jin Ziliang, Zhang Ningtao, Han Xiaofeng

机构信息

School of Electronics and Information Engineering, Harbin Institute of Technology, Harbin, 150080, China.

出版信息

Sci Rep. 2024 Aug 14;14(1):18915. doi: 10.1038/s41598-024-69052-9.

Abstract

The physical characteristics of electromagnetic waves are combined with digital information in coding metasurfaces. Coding metasurfaces enable precise control of beams by flexibly designing coding sequences. However, achieving continuous multivariate modulation of electromagnetic waves on passive flexible coded metasurfaces remains a challenge. Previous passive coding metasurfaces have a fixed phase difference between adjacent coding units throughout the operating frequency band, and when the coding pattern is defined, the coded metasurface can only achieve a single electromagnetic function. Our proposed frequency coding metasurface units vary linearly in phase difference over the operating frequency band with different phase sensitivities. Frequency coding metarsurfaces enable a wide range of tunable and versatile electromagnetic energy radiation, without introducing any active devices and changing the coding pattern. As a demonstration of the concept, we have shown theoretically and numerically that frequency coding metasurface can achieve successive transformations of electromagnetic functions, including multi-beam generation, anomalous deflection and diffuse scattering. In addition, beam sweeping function is achieved by means of spatially non-periodically distributed frequency coding metasurface. When the frequency of the incident wave is changed, the deflection angle of the beam is also changed. In addition to the tunability of properties, research on coding metasurfaces has tended to be limited to rigid materials. Flexible coding metasurfaces have potential applications in microwave antennas, radar and aircraft. The passive flexible frequency coding metasurfaces provide a novel approach to manipulating electromagnetic waves with increased design flexibility. This promises applications in microwave antennas, radar, aircraft, and satellite communications.

摘要

电磁波的物理特性与编码超表面中的数字信息相结合。编码超表面通过灵活设计编码序列实现对波束的精确控制。然而,在无源柔性编码超表面上实现电磁波的连续多变量调制仍然是一个挑战。以往的无源编码超表面在整个工作频带内相邻编码单元之间具有固定的相位差,当编码模式确定后,编码超表面只能实现单一的电磁功能。我们提出的频率编码超表面单元在工作频带内具有不同的相位灵敏度,其相位差呈线性变化。频率编码超表面能够实现广泛的可调谐和多功能电磁能量辐射,而无需引入任何有源器件且不改变编码模式。作为该概念的一个例证,我们已从理论和数值上表明,频率编码超表面能够实现电磁功能的连续变换,包括多波束生成、异常偏转和漫散射。此外,通过空间非周期性分布的频率编码超表面实现了波束扫描功能。当入射波的频率改变时,波束的偏转角也会改变。除了特性的可调谐性外,编码超表面的研究往往局限于刚性材料。柔性编码超表面在微波天线、雷达和飞机方面具有潜在应用。无源柔性频率编码超表面为操纵电磁波提供了一种新颖的方法,具有更高的设计灵活性。这有望应用于微波天线、雷达、飞机和卫星通信。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d43/11325028/0bdbac2992f5/41598_2024_69052_Fig1_HTML.jpg

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