Programmable Amplitude‐Coding Metasurface with Multifrequency Modulations

Q. Hong, Qian Ma, Xinxin Gao, Che Liu, Qiang Xiao, Shabab Iqbal, T. Cui
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引用次数: 15

Abstract

Recently, programmable metasurfaces have aroused great attention for various applications such as beam manipulation, wireless communication, and holograms by modulating the spatial phase or amplitude. However, programmable amplitude‐coding modulations have rarely been investigated due to the difficulty in realizing dynamic control of amplitude. Herein, a real‐time programmable amplitude‐coding metasurface with multifrequency modulation is proposed by integrating PIN diodes and chip attenuators to the metaelement. The element is encoded as “11,” “10,” and “00,” corresponding to the ON/OFF states of two diodes. By switching the two states of the PIN diode, the metaelement exhibits distinctly reflected amplitude responses in three frequencies (2.98, 4.11, and 5.73 GHz). For the whole metasurface, the magnitude of the reflected beam can be modulated with some specific coding patterns. To verify the performance, six coding patterns with 10 × 10 metaelements are designed, and four of them are measured. Experimental results are fundamentally consistent with theoretical designs and simulations. Further a wireless communication demonstration is designed and implemented to perform direct modulation of digital signals without using mixers required in the conventional wireless communication systems. It is envisioned that this work will find applications in new architecture encrypted communication and imaging systems.
具有多频率调制的可编程幅度编码超表面
近年来,可编程超表面在波束操纵、无线通信、空间相位或振幅调制全息图等方面的应用引起了人们的广泛关注。然而,由于难以实现幅度的动态控制,可编程的幅度编码调制很少被研究。本文通过将PIN二极管和芯片衰减器集成到元元件中,提出了一种实时可编程的多频调制幅度编码元元件。该元素被编码为“11”、“10”和“00”,对应于两个二极管的ON/OFF状态。通过切换PIN二极管的两种状态,元元件在三个频率(2.98、4.11和5.73 GHz)上表现出明显的反射幅度响应。对于整个超表面,反射光束的大小可以用一些特定的编码模式来调制。为了验证其性能,设计了6种10 × 10元元素的编码模式,并对其中的4种编码模式进行了测试。实验结果与理论设计和仿真基本一致。此外,设计并实现了一种无线通信演示,以在不使用常规无线通信系统中所需的混频器的情况下执行数字信号的直接调制。预计这项工作将在新架构加密通信和成像系统中找到应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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