Zou Yijun, Jin Hui, Zhu Rongrong, Zhang Ting
Interdisciplinary Center for Quantum Information, State Key Laboratory of Modern Optical Instrumentation, ZJU-Hangzhou Global Scientific and Technological Innovation Center, Zhejiang University, Hangzhou 310027, China.
School of Information and Electrical Engineering, Zhejiang University City College, Hangzhou 310015, China.
Nanomaterials (Basel). 2023 Dec 26;14(1):66. doi: 10.3390/nano14010066.
Metasurface holography offers significant advantages, including a broad field of view, minimal noise, and high imaging quality, making it valuable across various optical domains such as 3D displays, VR, and color displays. However, most passive pure-structured metasurface holographic devices face a limitation: once fabricated, as their functionality remains fixed. In recent developments, the introduction of multiplexed and reconfigurable metasurfaces breaks this limitation. Here, the comprehensive progress in holography from single metasurfaces to multiplexed and reconfigurable metasurfaces is reviewed. First, single metasurface holography is briefly introduced. Second, the latest progress in angular momentum multiplexed metasurface holography, including basic characteristics, design strategies, and diverse applications, is discussed. Next, a detailed overview of wavelength-sensitive, angle-sensitive, and polarization-controlled holograms is considered. The recent progress in reconfigurable metasurface holography based on lumped elements is highlighted. Its instant on-site programmability combined with machine learning provides the possibility of realizing movie-like dynamic holographic displays. Finally, we briefly summarize this rapidly growing area of research, proposing future directions and potential applications.
超表面全息术具有显著优势,包括宽视场、低噪声和高成像质量,使其在3D显示、虚拟现实(VR)和彩色显示等各种光学领域具有重要价值。然而,大多数无源纯结构超表面全息器件面临一个限制:一旦制造完成,其功能就保持固定不变。在最近的发展中,复用和可重构超表面的引入打破了这一限制。在此,本文综述了从单超表面全息术到复用和可重构超表面全息术在全息领域的全面进展。首先,简要介绍单超表面全息术。其次,讨论角动量复用超表面全息术的最新进展,包括基本特性、设计策略和各种应用。接下来,详细概述波长敏感、角度敏感和偏振控制全息图。重点介绍基于集总元件的可重构超表面全息术的最新进展。其即时现场可编程性与机器学习相结合,为实现电影般的动态全息显示提供了可能性。最后,我们简要总结了这一快速发展的研究领域,提出了未来的方向和潜在应用。