Full‐Space Triple‐Channel Circularly‐Polarized Metasurface with Arbitrary Amplitude Allocation and Independent Phase Control

物理 振幅 极化(电化学) 光学 发射机 传输(电信) 天线(收音机) 相(物质) 反射(计算机编程) 阻抗匹配 输电线路 电磁辐射 平面波 辐射 相位控制 能量(信号处理) 自由度(物理和化学) 声学 波传播 辐射模式 电力传输 电阻抗 微波传输 喇叭天线 匹配(统计) 圆极化
作者
Shi Sun,Zi Hua You,Lei Zhang,Bin Xu,Tie Jun Cui,Hui Feng
出处
期刊:Laser & Photonics Reviews [Wiley]
卷期号:20 (5) 被引量:2
标识
DOI:10.1002/lpor.202502005
摘要

Abstract Flexible manipulations to amplitudes and phases of multi‐channel circularly polarized (CP) waves using a single metasurface have attracted significant attention in recent years. Here, a full‐space triple‐channel circularly‐polarized metasurface (FSTCM) is proposed to achieve arbitrary amplitude allocations and independent phase controls. The FSTCM is composed of receiver‐transmitter integrated meta‐atoms, in which a phase‐delay line is introduced between the receiving and transmitting patches. By adjusting the impedance matching characteristics of the receiver and the polarization characteristics of the transmitter, the amplitudes of co‐polarized reflection, co‐polarized transmission, and cross‐polarized transmission under a CP incident wave can be arbitrarily allocated, while their phases can be independently controlled by combining the geometric phases of receiver and transmitter with the propagation phase of the phase‐delay line. As experimental demonstrations, a three‐beam transmit‐reflect‐array antenna (TRA) with arbitrary energy allocation and different radiation angles, and a bidirectional TRA with low sidelobe levels (SLLs) for both reflection and transmission beams is designed, fabricated, and measured, respectively. The simulated and measured results of two TRAs agree very well with theoretical predictions, showing that the proposed FSTCM can provide greater degrees of freedom for controlling CP waves and has good performance.
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