Cai Chengxin, Li Yinfei, Li Mingxing, Qin Yao, Zhou Yangyang
Key Laboratory of Grain Information Processing and Control (Henan University of Technology), Ministry of Education, Zhengzhou, 450001, People's Republic of China.
Henan Key Laboratory of Grain Photoelectric Detection and Control, Henan University of Technology, Zhengzhou, 450001, People's Republic of China.
Sci Rep. 2024 Sep 8;14(1):20904. doi: 10.1038/s41598-024-72018-6.
The integration of multiple functionalities into a single, planar, ultra-compact metasurface has presented significant opportunities for enhancing capacity and performance within compact 5G/6G communication systems. Recent advances in multifunctional metasurfaces have unveiled comprehensive wavefront manipulations utilizing phase, polarization transmission/reflection, and coding apertures. Despite these developments, there remains a critical need for multifunctional metasurfaces with expanded channel capabilities, including multiple operational frequencies, minimal crosstalk, and high-efficiency computable array factors. This study introduces a multifunctional metasurface that integrates phase- and amplitude simultaneous coding meta-atoms at dual frequencies. By altering the polarization of electromagnetic (EM) waves, it is possible to reshape the wave-fronts of reflected waves at these frequencies. The coding metasurface proficiently manipulates both x and y linearly polarized waves through phase and amplitude coding at dual frequencies, thereby enabling distinct functionalities such as anomalous reflection, reflection imaging, and vortex wave beam generation. Both theoretical analysis and full-wave simulation confirm the anticipated functionalities of the designed devices, paving the way for advancements in integrated communication systems with diverse functionalities.
将多种功能集成到单个平面超紧凑超表面中,为增强紧凑型5G/6G通信系统的容量和性能提供了重大机遇。多功能超表面的最新进展揭示了利用相位、偏振传输/反射和编码孔径进行的全面波前操纵。尽管有这些进展,但仍然迫切需要具有扩展信道能力的多功能超表面,包括多个工作频率、最小串扰和高效可计算阵列因子。本研究介绍了一种在双频集成相位和幅度同时编码超原子的多功能超表面。通过改变电磁(EM)波的偏振,可以在这些频率下重塑反射波的波前。编码超表面通过双频相位和幅度编码有效地操纵x和y线性偏振波,从而实现诸如异常反射、反射成像和涡旋波束生成等不同功能。理论分析和全波模拟均证实了所设计器件的预期功能,为具有多种功能的集成通信系统的发展铺平了道路。