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用于圆极化波的具有幅度和相位独立控制功能的全空间三功能超表面。

Full-space trifunctional metasurface with independent control of amplitude and phase for circularly polarized waves.

作者信息

Li Xi Ming, Zhao Yuan, Lu Ren Pan, Sun Xiao Feng, Yang Zhao, He Hai Dan, Liu Yan Hui, Du Guo Hong

机构信息

School of Electronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu 611731, China.

College of Electronic Engineering, Chengdu University of Information Technology, Chengdu 610225, China.

出版信息

Nanophotonics. 2024 Oct 23;13(24):4471-4481. doi: 10.1515/nanoph-2024-0441. eCollection 2024 Nov.

Abstract

Flexible and diverse manipulation of electromagnetic (EM) waves in half space (reflection or transmission) has facilitated strong aspiration toward full-space wave control. However, it remains challenging to achieve independent amplitude and phase control, which seriously hinder the real-world applications. Herein, an innovative strategy of trifunctional metasurface is proposed to independently and simultaneously manipulate the amplitude and phase of circular polarized waves in full space. The multifunctional design is composed of double-layer anisotropic metasurface sandwiched with a bandpass frequency selective surface, with a frequency-direction multiplexed paradigm for on-demand control of both amplitude and phase across three independent channels. To validate the concept, a multifunctional metadevice is designed and verified by simulations and experiments, showcasing arbitrary near-field and far-field power modulation in full space. Lateral and axial bifocal metalenses with desired intensity distribution are designed in two reflection channels at 9 GHz, while multibeam generator with desired spatial scatterings and power allocations is designed in transmissive channel at 13 GHz. The finding paves the way for attaining multifunctional metadevices with amplitude and phase modulation in full space, which have potential applications in high-quality imaging and high-capacity communication systems.

摘要

在半空间中对电磁波(EM)进行灵活多样的操控(反射或透射)推动了人们对全空间波控制的强烈渴望。然而,实现独立的幅度和相位控制仍然具有挑战性,这严重阻碍了其在实际中的应用。在此,提出了一种创新的三功能超表面策略,以在全空间中独立且同时地操控圆极化波的幅度和相位。这种多功能设计由夹有带通频率选择表面的双层各向异性超表面组成,采用频率 - 方向复用模式,可通过三个独立通道按需控制幅度和相位。为验证这一概念,设计了一个多功能超器件,并通过仿真和实验进行了验证,展示了全空间中任意的近场和远场功率调制。在9 GHz的两个反射通道中设计了具有所需强度分布的横向和轴向双焦点金属透镜,而在13 GHz的透射通道中设计了具有所需空间散射和功率分配的多波束发生器。这一发现为实现全空间中具有幅度和相位调制的多功能超器件铺平了道路,这些超器件在高质量成像和高容量通信系统中具有潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e94/11636479/e6cd1b37c510/j_nanoph-2024-0441_fig_001.jpg

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