Twisted metamaterials for mechanical optical switch
Abstract
The emergence of twisted metamaterials opens up an avenue for research in metamaterials. However, the current emphasis primarily lies in mechanics, rendering it intriguing to explore the application of compression-torsion coupling effect in optics. This present study introduces a thin-walled circular tube (TWCT) structure, characterized by a pronounced twisting angle of up to 59.5°, achieved only through a single-layer TWCT configuration. We demonstrate a significant compression-torsion coupling phenomenon, surpassing the findings of previous research endeavors. TWCT's deformation mechanism is harnessed in optical imaging through the integration of experimental, theoretical, and finite element approaches. The information stored in TWCT can be gradually projected through optical imaging when the elastic strain stimulates TWCT. These findings presented herein introduces a straightforward and valid approach to employ TWCT as a reliable mechanical switch for optical imaging, thereby showcasing its potential in the fields of cryptographic techniques, information storage, and transmission via optical imaging.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (7)
Wenlei Yang
College of Information and Intelligence Engineering, Zhejiang Wanli University 1 , Ningbo 315000,
Yuanhao Tie
College of Mechanical and Vehicle Engineering, Chongqing University 2 , Chongqing 400044,
Klaus Pantke
Department of Design and Production Engineering, Hamm-Lippstadt University of Applied Sciences 3 , Hamm 59063,
Andras Biczo
Department Hamm 2, Hamm-Lippstadt University of Applied Sciences 4 , Hamm 59063,
Ning Feng
Ronghui Guo
School of Electrical and Mechanical Engineering, Pingdingshan University 6 , Pingdingshan 467000,
Le Li