可重构性
波前
光束转向
无线
材料科学
双稳态
微波食品加热
全息术
可扩展性
电子线路
计算机科学
智能材料
电子工程
可穿戴计算机
干扰(通信)
数码产品
超材料
电磁辐射
光电子学
微控制器
无线电频率
超短脉冲
能量收集
控制器(灌溉)
执行机构
纳米技术
无线网络
可穿戴技术
作者
Siqi Huang,Zi Xuan Cai,Xin Li,Long Chen,Jie Xu,Jing Liang,Jianghan Bao,Che Liu,Jian Wei You
摘要
Dynamically and energy-efficient control of electromagnetic (EM) waves is highly desirable for next-generation wireless communication and sensing. However, most existing intelligent metasurfaces rely on power-hungry electronic circuits and complex fabrication, limiting their scalability, and deployment. Here we introduce MetaScreen, a mechanically reconfigurable metasurface that exploits a unique flipping mechanism to alternate between meta-atoms with distinct EM responses and visual colors, thereby enabling simultaneous wavefront manipulation and optical display. Each bistable flip element integrates a permanent magnet and is actuated by a microcontroller-driven magnetic-control module to convert a short electrical pulse into rapid and nonvolatile mechanical switching. This design achieves low-power and stable EM wave manipulation and endows the metasurface with intrinsic visual programmability through color-coded coatings on the meta-atom surfaces, thus supporting microwave wavefront control and visible information display in the same platform. Dynamic beam steering for wireless communication, adaptive EM wave focusing for contactless respiration monitoring, bidirectional human-machine interaction, and microwave holography are demonstrated, highlighting the versatile EM manipulation and multi-domain programmability of the platform. Owing to its energy efficiency, low cost, and long-term stability, MetaScreen offers a practical route toward sustainable and scalable applications in wireless communication, smart internet of things (IoT), and optical-EM camouflage.
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