微电子机械系统
超材料
极高频率
光学
毫米
炸薯条
材料科学
波长
光电子学
地平面
物理
计算机科学
电信
天线(收音机)
作者
Han Wang,Zhigang Wang,Cheng Gong,Xinyu Li,Tiansheng Cui,Huiqi Jiang,Minghui Deng,Bo Yan,Weiwei Liu
标识
DOI:10.1038/s41377-024-01733-6
摘要
Abstract A stacked metamaterial MEMS (meta-MEMS) chip is proposed, which can perfectly absorb electromagnetic waves, convert them into mechanical energy, drive movement of the optical micro-reflectors array, and detect millimeter waves. It is equivalent to using visible light to image a millimeter wave. The meta-MEMS adopts the design of upper and lower chip separation and then stacking to achieve the “dielectric-resonant-air-ground” structure, reduce the thickness of the metamaterial and MEMS structures, and improve the performance of millimeter wave imaging. For verification, we designed and prepared a 94 GHz meta-MEMS focal plane array chip, in which the sum of the thickness of the metamaterial and MEMS structures is only 1/2500 wavelength, the pixel size is less than 1/3 wavelength, but the absorption rate is as high as 99.8%. Moreover, a light readout module was constructed to test the millimeter wave imaging performance. The results show that the response speed can reach 144 Hz and the lens-less imaging resolution is 1.5 mm.
科研通智能强力驱动
Strongly Powered by AbleSci AI