Kim Joohoon, Im Jun-Hyung, So Sunae, Choi Yeongseon, Kang Hyunjung, Lim Bogyu, Lee Minjae, Kim Young-Ki, Rho Junsuk
Department of Mechanical Engineering, Pohang University of Science and Technology (POSTECH), Pohang, 37673, Republic of Korea.
Department of Chemical Engineering, Pohang University of Science and Technology (POSTECH), Pohang, 37673, Republic of Korea.
Adv Mater. 2024 Jun;36(24):e2311785. doi: 10.1002/adma.202311785. Epub 2024 Mar 15.
Metasurfaces are flat arrays of nanostructures that allow exquisite control of phase and amplitude of incident light. Although metasurfaces offer new active element for both fundamental science and applications, the challenge still remains to overcome their low information capacity and passive nature. Here, by integrating an inverse-designed-metasurface with oblique helicoidal cholesteric liquid crystal (Ch), simultaneous spatial and spectral tunable metasurfaces with a high information capacity for dynamic hyperspectral holography, are demonstrated. The inverse design facilitates a single-phase map encoding of ten independent holographic images at different wavelengths. Ch provides precise spectral modulation with narrow bandwidth and wide tunable regime in response to programmed stimuli, thus enabling dynamic switching of the multicolor holography. The results provide simple and generalizable principles for the rational design of interactive metasurfaces that will find numerous applications, including security platform.
超表面是纳米结构的平面阵列,能够对入射光的相位和幅度进行精确控制。尽管超表面为基础科学和应用提供了新的有源元件,但要克服其低信息容量和被动性质的挑战仍然存在。在此,通过将逆设计的超表面与倾斜螺旋胆甾相液晶(Ch)相结合,展示了具有高信息容量的用于动态超光谱全息术的同时空间和光谱可调谐超表面。逆设计有助于在不同波长下对十个独立全息图像进行单相图编码。Ch响应编程刺激提供具有窄带宽和宽可调范围的精确光谱调制,从而实现多色全息术的动态切换。这些结果为交互式超表面的合理设计提供了简单且可推广的原理,这将在包括安全平台在内的众多应用中得到应用。