Zhang Lijian, Gao Chuang, Guo Hua, Zhang Haoyu, Zhao Zepeng, Liu Tian
School of Electronic and Information, Xi'an Polytechnic University, Xi'an, 710048, China.
College of Electronic Information, Qingdao University, Qingdao, 266071, China.
Sci Rep. 2024 Nov 1;14(1):26260. doi: 10.1038/s41598-024-77961-y.
This study proposes and experimentally validates a multifunctional, ultra-wideband polarization conversion metasurface. The design integrates polarization conversion and electromagnetic scattering functions into a single structure, enabling applications in polarization conversion, beam control, and effective reduction of the radar cross-section (RCS). The metasurface achieves linear-to-circular polarization conversion with an axial ratio (AR) of less than 3 dB across dual-band ranges of 14.6-26.8 GHz and 31-33.5 GHz. Additionally, by adjusting metallic resonant rings within the unit structure, cross-polarization conversion with a polarization conversion ratio (PCR) greater than 0.9 is realized in the 13.6-29.8 GHz frequency range, maintaining excellent stability even at oblique incidence angles up to 50°. Leveraging the phase cancellation principle, various coding arrays are designed to precisely control the scattered beams, reducing the RCS by more than 10 dB. The comparison of simulation and experimental results further validates the wide application potential of this polarization converter in fields such as wireless communication, antenna engineering, and radar stealth.
本研究提出并通过实验验证了一种多功能超宽带极化转换超表面。该设计将极化转换和电磁散射功能集成到单个结构中,可应用于极化转换、波束控制以及有效减小雷达散射截面(RCS)。该超表面在14.6 - 26.8 GHz和31 - 33.5 GHz的双频段范围内实现了轴比(AR)小于3 dB的线性到圆极化转换。此外,通过调整单元结构内的金属谐振环,在13.6 - 29.8 GHz频率范围内实现了极化转换比(PCR)大于0.9的交叉极化转换,即使在高达50°的斜入射角下也能保持出色的稳定性。利用相位抵消原理,设计了各种编码阵列以精确控制散射波束,使RCS降低超过10 dB。仿真和实验结果的比较进一步验证了这种极化转换器在无线通信、天线工程和雷达隐身等领域的广泛应用潜力。