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一种用于独立控制任意谐波阶次的合成移动包络超表面天线。

A synthetic moving-envelope metasurface antenna for independent control of arbitrary harmonic orders.

作者信息

Wu Geng-Bo, Dai Jun Yan, Shum Kam Man, Chan Ka Fai, Cheng Qiang, Cui Tie Jun, Chan Chi Hou

机构信息

State Key Laboratory of Terahertz and Millimeter Waves (City University of Hong Kong), Hong Kong, 999077, China.

Department of Electrical Engineering, City University of Hong Kong, Hong Kong, 999077, China.

出版信息

Nat Commun. 2024 Aug 22;15(1):7202. doi: 10.1038/s41467-024-51587-0.

Abstract

Flexible frequency controls are crucial in many photonic and electronic applications, ranging from communications systems, spectroscopy, and metrology to quantum information processing. However, the state-of-the-art solutions based on nonlinear bulk media, electro-optic effect, and nonlinear metasurfaces incur very limited spectral controllability, and merely a couple of harmonic orders can be independently manipulated. Here, we theoretically propose and experimentally demonstrate synthetic moving-envelope metasurface antennas capable of simultaneously generating arbitrary harmonic orders and independently manipulating their wave properties in a software-defined manner. As proof-of-principle examples, we demonstrate unidirectional frequency transition, frequency comb generation, arbitrary harmonic orders independent control, and their applications in frequency-division multiplexing communications. All these complicated functionalities are achieved by the 1-bit spatiotemporally ON-OFF switching of meta-atoms of the waveguide-integrated metasurface antenna. Our proposed synthetic metasurface antenna solution greatly expands the frontiers of wave engineering and information manipulation, showing promising potential in wireless communications, spectroscopy, metrology, and quantum science.

摘要

灵活的频率控制在许多光子和电子应用中至关重要,涵盖从通信系统、光谱学、计量学到量子信息处理等领域。然而,基于非线性块状介质、电光效应和非线性超表面的现有解决方案的光谱可控性非常有限,只能独立操纵少数几个谐波阶次。在此,我们从理论上提出并通过实验证明了合成移动包络超表面天线,它能够以软件定义的方式同时生成任意谐波阶次并独立操纵其波特性。作为原理验证示例,我们展示了单向频率转换、频率梳生成、任意谐波阶次的独立控制及其在频分复用通信中的应用。所有这些复杂功能都是通过波导集成超表面天线的超原子的1比特时空通断切换来实现的。我们提出的合成超表面天线解决方案极大地扩展了波工程和信息操纵的前沿领域,在无线通信、光谱学、计量学和量子科学中显示出广阔的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4000/11339288/99c7f3eb63a9/41467_2024_51587_Fig1_HTML.jpg

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