Yu Jiancan, Liu Zhihua, Wang Ming, Wang Changxian, Chen Geng, Cui Zequn, Wang Ting, Yang Hui, Wang Xiaotian, Chen Xiaodong
Innovative Centre for Flexible Devices (iFLEX), Max Planck - NTU Joint Lab for Artificial Senses, School of Materials Science and Engineering, Nanyang Technological University, Singapore, 639798, Singapore.
School of Materials, Sun Yat-sen University, Shenzhen Campus, Shenzhen, 518107, China.
Adv Mater. 2022 Jan;34(1):e2102560. doi: 10.1002/adma.202102560. Epub 2021 Oct 22.
Phase transitions are universal in solid-state matters, as well as in periodic electromagnetic metasurfaces-the photonic analogues of crystals. Although such transitions dictate the properties of active metasurfaces, universal ways to describe the structure transition of periodic metasurfaces have not yet been established. Here, the authors report the strain-enabled phase transition (or lattice deformation) of stretchable metasurfaces with the crystallographic description. They analytically and experimentally demonstrate the phase transition of plasmonic lattices between two arbitrary 2D Bravais lattices under certain strain configurations. The strain-induced symmetry lowering of the structures gives rise to optical anisotropy upon polarization, namely, linearly and circularly polarized dichroism. They further demonstrate the potential of phase transition in information decoding with applied strain. Interpreting the phase transition of metasurfaces from a standpoint of symmetry would accelerate the discovery of emergent properties, and provide a generalizable approach to designing active metasurfaces.
相变在固态物质中普遍存在,在周期性电磁超表面(晶体的光子类似物)中也是如此。尽管这种相变决定了有源超表面的特性,但尚未建立描述周期性超表面结构转变的通用方法。在此,作者报告了具有晶体学描述的可拉伸超表面的应变驱动相变(或晶格变形)。他们通过分析和实验证明了在特定应变配置下,等离子体晶格在两个任意二维布拉维晶格之间的相变。结构的应变诱导对称性降低导致极化时的光学各向异性,即线性和圆偏振二向色性。他们进一步展示了应用应变在信息解码中相变的潜力。从对称性的角度解释超表面的相变将加速新特性的发现,并提供一种可推广的有源超表面设计方法。