Information and Navigation College, Air Force Engineering University, Xi'an 710077, China.
State Key Laboratory of Millimeter Waves, Southeast University, Nanjing 210096, China.
ACS Appl Mater Interfaces. 2023 May 17;15(19):23690-23700. doi: 10.1021/acsami.3c04082. Epub 2023 May 3.
In wireless communication systems, a multibeam can be used to increase the number of spatial channels by space-division multiplexing. Furthermore, the multimode is used to enhance the channel capacity by mode-division multiplexing. However, few of the previously reported methods cannot achieve independent controls of orbital angular momentum (OAM) states by transmissive metasurfaces in both space-division and mode-division multiplexing simultaneously. To expand the wireless communication channel, a multilayer transmissive digital coding metasurface with a single emitting source is demonstrated for quad-OAM beam generation with a dual mode. By changing the geometry of the cross dipole for a unit cell, the polarization-dependent 3-bit phase responses are obtained to flexibly manipulate the multi-OAM beams with different modes in preset directions simultaneously. Two types of metasurfaces are designed and fabricated to realize four OAM beams with two topological charges in different directions by encoding the phase sequence in - and -directions, which is validated by both theoretical analyses and experimental results. This scheme of transmissive digital coding metasurface provides a simple way to the multiplexing, multichannel, and multiplatform communication and imaging systems.
在无线通信系统中,多波束可通过空分复用来增加空间信道数量。此外,多模通过模分复用来提高信道容量。然而,以前的报道中很少有方法能够在空间分复用和模分复用中同时实现对轨道角动量(OAM)状态的独立控制。为了扩展无线通信信道,展示了一种具有单个发射源的多层透射式数字编码超表面,用于双模式的四-OAM 波束产生。通过改变单元的十字偶极子的几何形状,获得了偏振相关的 3 位相位响应,从而能够灵活地同时在预设方向上操纵具有不同模式的多-OAM 波束。设计并制作了两种类型的超表面,通过在-和-方向上编码相位序列,实现了不同方向上具有两个拓扑电荷的四-OAM 光束,理论分析和实验结果均验证了这一结果。这种透射式数字编码超表面方案为复用、多通道和多平台通信和成像系统提供了一种简单的方法。