Zhang Xin Ge, Tang Wen Xuan, Jiang Wei Xiang, Bai Guo Dong, Tang Jian, Bai Lin, Qiu Cheng-Wei, Cui Tie Jun
State Key Laboratory of Millimeter Waves School of Information Science and Engineering Southeast University Nanjing 210096 China.
Department of Electrical and Computer Engineering National University of Singapore Singapore 119620 Singapore.
Adv Sci (Weinh). 2018 Aug 1;5(11):1801028. doi: 10.1002/advs.201801028. eCollection 2018 Nov.
Since the advent of digital coding metamaterials, a new paradigm is unfolded to sample, compute and program electromagnetic waves in real time with one physical configuration. However, one inconvenient truth is that actively tunable building blocks such as diodes, varactors, and biased lines must be individually controlled by a computer-assisted field programmable gate array and physically connected by electrical wires to the power suppliers. This issue becomes more formidable when more elements are needed for more advanced and multitasked metadevices and metasystems. Here, a remote-mode metasurface is proposed and realized that is addressed and tuned by illuminating light. By tuning the intensity of light-emitting diode light, a digital coding metasurface composed of such light-addressable elements enables dynamically reconfigurable radiation beams in a control-circuitry-free way. Experimental demonstration is validated at microwave frequencies. The proposed dynamical remote-tuning metasurface paves a way for constructing unprecedented digital metasurfaces in a noncontact remote fashion.
自从数字编码超材料出现以来,一种新的范式得以展现,即通过一种物理结构实时对电磁波进行采样、计算和编程。然而,一个不便的事实是,诸如二极管、变容二极管和偏置线等有源可调组件必须由计算机辅助现场可编程门阵列单独控制,并通过电线与电源物理连接。当更先进、多任务的超材料器件和超材料系统需要更多元件时,这个问题就变得更加棘手。在此,提出并实现了一种通过照射光来寻址和调谐的远程模式超表面。通过调节发光二极管光的强度,由这种光寻址元件组成的数字编码超表面能够以无控制电路的方式实现动态可重构辐射波束。在微波频率下进行了实验验证。所提出的动态远程调谐超表面为以非接触远程方式构建前所未有的数字超表面铺平了道路。