Department of Electrical and Electronic Engineering, Southern University of Science and Technology, Shenzhen 518055, China.
Smart Photonic Materials, Faculty of Engineering and Natural Sciences, Tampere University, P.O. Box 541, Tampere FI-33101, Finland.
Mater Horiz. 2022 Mar 7;9(3):942-951. doi: 10.1039/d1mh01377g.
Metasurfaces, consisting of artificially fabricated sub-wavelength -atoms with pre-designable electromagnetic properties, provide novel opportunities to a variety of applications such as light detectors/sensors, local field imaging and optical displays. Currently, the tuning of most metasurfaces requires redesigning and reproducing the entire structure, rendering them ineligible for post-fabrication shape-morphing or spectral reconfigurability. Here, we report a photoelastic metasurface with an all-optical and reversible resonance tuning in the near infrared range. The photoelastic metasurface consists of hexagonal gold nanoarrays deposited on a deformable substrate made of a liquid crystalline network. Upon photo-actuation, the substrate deforms, causing the lattice to change and, as a result, the plasmon resonance to shift. The centre wavelength of the plasmon resonance exhibits an ultra-large spectral tuning of over 245 nm, from 1490 to 1245 nm, while the anisotropic deformability also endows light-switchable sensitivity in probing polarization. The proposed concept establishes a light-controlled soft platform that is of great potential for tunable/reconfigurable photonic devices, such as nano-filters, -couplers, -holograms, and displays with structural colors.
超表面由具有预先可设计的电磁特性的人工制造的亚波长-原子组成,为各种应用提供了新的机会,例如光探测器/传感器、局部场成像和光学显示器。目前,大多数超表面的调谐需要重新设计和复制整个结构,这使得它们不适合于制造后的形状变形或光谱可重构性。在这里,我们报告了一种在近红外范围内具有全光学和可逆共振调谐的光弹超表面。光弹超表面由沉积在由液晶网络制成的可变形衬底上的六边形金纳米阵列组成。在光致动时,衬底发生变形,导致晶格发生变化,从而使等离子体共振发生位移。等离子体共振的中心波长表现出超过 245nm 的超宽光谱调谐,从 1490nm 到 1245nm,而各向异性的可变形性也赋予了探测偏振时的光控灵敏度。所提出的概念建立了一个光控软平台,对于可调谐/可重构光子器件具有很大的潜力,例如纳米滤波器、-耦合器、-全息图和具有结构颜色的显示器。