Sun Ya-Lun, Zhang Xin-Ge, Yu Qian, Jiang Wei-Xiang, Cui Tie-Jun
State Key Laboratory of Millimeter Waves, School of Information Science and Engineering, Southeast University, Nanjing 210096, China.
State Key Laboratory of Millimeter Waves, School of Information Science and Engineering, Southeast University, Nanjing 210096, China.
Sci Bull (Beijing). 2020 Jun 15;65(11):883-888. doi: 10.1016/j.scib.2020.03.016. Epub 2020 Mar 10.
Programmable metasurface enables controlling electromagnetic (EM) waves in real time. By programming the states of active device embedded in metasurface element, the EM properties of the digital metasurface can be changed quickly without redesigning their structures. However, large numbers of long-distance wires are required to connect the programmable metasurface to provide the coded signals from field programmable gate array (FPGA) when controlling the metasurface at a long distance, which is complicated and inconvenient. Here, we propose an infrared-controlled programmable metasurface that can be programmed remotely. The infrared transceiver is able to switch the coding sequences stored in the FPGA controller, thus controlling the voltage on the varactors integrated in the metasurface. Experiment is performed at microwave frequencies, and the measured results verify that the scattering beams of the metasurface sample can be changed remotely by using infrared ray. The proposed infrared-controlled programmable metasurface opens up avenues for constructing a new class of remotely-tuning dynamic metasurfaces.
可编程超表面能够实时控制电磁波。通过对嵌入超表面单元的有源器件状态进行编程,数字超表面的电磁特性可以快速改变,而无需重新设计其结构。然而,在远距离控制超表面时,需要大量长距离导线来连接可编程超表面,以提供来自现场可编程门阵列(FPGA)的编码信号,这既复杂又不方便。在此,我们提出一种可远程编程的红外控制可编程超表面。红外收发器能够切换存储在FPGA控制器中的编码序列,从而控制集成在超表面中的变容二极管上的电压。实验在微波频率下进行,测量结果验证了通过红外线可以远程改变超表面样品的散射光束。所提出的红外控制可编程超表面为构建新型远程调谐动态超表面开辟了道路。