伪装
宽带
消色差透镜
计算机科学
控制重构
超材料
带宽(计算)
雷达
渲染(计算机图形)
掩蔽
流体学
窄带
电磁兼容性
波束宽度
光学
电子工程
电磁干扰
电磁辐射
可重构性
太赫兹辐射
幻觉
铅笔(光学)
电磁学
软件部署
现场可编程门阵列
光子学
光束转向
作者
Shipeng Liu,Aobo Ren,Junxiong Wang,Zeyao Chen,Zhaotong Yu,Jinhong Luo,Jiabao Luo,Rujia Cao,Shuxi Gong,Qingxin Guo,Ping Li,Rujiang Li,Ke Chen,Yongtao Jia,Ying Liu
标识
DOI:10.1002/advs.202523971
摘要
ABSTRACT Broadband and reconfigurable illusion camouflage remains a major challenge in electromagnetic wave manipulation, as it imposes concurrent demands for precise dispersion control together with reliable real‐time switching across wide frequency ranges. Existing metasurface cloaks typically suffer from narrow bandwidths and limited adaptability, rendering them unsuitable for dynamic radar detection scenarios. Herein, we propose and experimentally demonstrate a Fluidic‐Accessible Metasurface (FAM) that overcomes these limitations by enabling programmable electromagnetic illusions through focal‐spot encoding. The supercells are designed with strong dispersion control and achromatic focusing capabilities, thereby generating stable scattering hotspots from the radar perspective. Through the assembly and fluidic reconfiguration of these supercells, the FAM dynamically reconstructs the illusionary contours of diverse targets, such as aircraft, drones, and tanks, within an ultrawide operational bandwidth of 9–14 GHz. Experimental near‐field measurements, in agreement with full‐wave simulations, verify reliable and repeatable illusion camouflage states without leakage or degradation during fluidic reconfiguration. This strategy, therefore, unifies broadband operation, dynamic programmability, high adaptability, and structural robustness, directly addressing the key limitations of existing metasurface cloaks. This work establishes a versatile platform for programmable electromagnetic illusions, enabling the practical deployment of next‐generation intelligent metasurface camouflage systems.
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