论文标题
电气可调的多功能全dielectric metasurfaces与可见的液晶集成
Electrically Tunable Multifunctional All-Dielectric Metasurfaces Integrated with Liquid Crystals in the Visible
论文作者
论文摘要
作为二维超材料,Metasurfaces开辟了用于设计静态平面光学的新途径。但是,实用应用需要光条中的元时间的动态调制。现有的动态设备很少利用元信息的两极分化操纵能力。在这里,我们通过基于新颖的包装方案将双重液体晶体(LCS)与全dielectric跨度范围整合到可见范围的可见范围内的电气多功能元面。通过结合元表面的螺旋依赖性几何相和LC分子的极化控制能力,可以实现连续的强度调整和两个螺旋性通道的切换。电气可调的单通道可切换元数据,多色多路复用元数据和动态变型金属旨在验证概念。动态调整中极化控制的探索可以为在各种应用中的动态跨表面设备(例如空间光调节器,光检测和范围系统以及全息图显示)铺平道路。
As two-dimensional metamaterials, metasurfaces open up new avenues for designing static planar optics. However, the dynamic modulation of metasurfaces in the optical band is required for practical applications. The existing dynamic devices rarely utilized the polarization manipulation capability of metasurfaces. Here, we demonstrate an electrically tunable multifunctional metasurface in the visible range by integrating birefringent liquid crystals (LCs) with all-dielectric metasurfaces based on a novel packaging scheme. By combining the helicity-dependent geometric phase of the metasurface and the polarization control ability of LC molecules, continuous intensity tuning and switching of two helicity channels are realized. Electrically tunable single-channel switchable metaholograms, multicolor multiplexed metaholograms, and dynamic varifocal metalenses are designed to verify the concept. The exploration of polarization control in dynamic tuning can pave the way for dynamic metasurface devices in various applications, such as space light modulators, light detection and ranging systems, and holographic displays.