Zhang Wu, Lin Jiahan, Zheng Zitao, Gao Yusong, Tao Jifang, Shang Wenli, Zhang Meng
School of Physics and Material Science, Guangzhou University, Guangzhou 510006, China.
School of Information Science and Engineering, Shandong University, Jinan 250100, China.
Micromachines (Basel). 2023 Oct 29;14(11):2011. doi: 10.3390/mi14112011.
In this paper, we demonstrate a multi-functional metasurface for microwave beam-shaping application. The metasurface consists of an array of programmable unit cells, and each unit cell is integrated with one varactor diode. By turning the electrical bias on the diode on and off, the phase delay of the microwave reflected by the metasurface can be switched between 0 and π at a 6.2 GHz frequency, which makes the metasurface 1-bit-coded. By programming the 1-bit-coded metasurface, the generation of a single-focus beam, a double-focus beam and a focused vortex beam was experimentally demonstrated. Furthermore, the single-focus beam with tunable focal lengths of 54 mm, 103 mm and 152 mm was experimentally observed at 5.7 GHz. The proposed programmable metasurface manifests robust and flexible beam-shaping ability which allows its application to microwave imaging, information transmission and sensing applications.
在本文中,我们展示了一种用于微波波束整形应用的多功能超表面。该超表面由可编程单元阵列组成,每个单元都集成了一个变容二极管。通过打开和关闭二极管上的电偏置,超表面反射的微波的相位延迟可以在6.2 GHz频率下在0和π之间切换,这使得超表面成为1位编码的。通过对1位编码的超表面进行编程,实验证明了单聚焦波束、双聚焦波束和聚焦涡旋波束的产生。此外,在5.7 GHz频率下实验观察到了焦距可调为54 mm、103 mm和152 mm的单聚焦波束。所提出的可编程超表面表现出强大而灵活的波束整形能力,使其能够应用于微波成像、信息传输和传感应用。