Zhang Lei, Cui Tie Jun
State Key Laboratory of Millimeter Waves, Southeast University, Nanjing 210096, China.
Institute of Electromagnetic Space, Southeast University, Nanjing 210096, China.
Research (Wash D C). 2021 May 22;2021:9802673. doi: 10.34133/2021/9802673. eCollection 2021.
Space-time-modulated metastructures characterized by spatiotemporally varying properties have recently attracted great interest and become one of the most fascinating and promising research fields. In the meantime, space-time-coding digital metasurfaces with inherently programmable natures emerge as powerful and versatile platforms for implementing the spatiotemporal modulations, which have been successfully realized and used to manipulate the electromagnetic waves in both the spectral and spatial domains. In this article, we systematically introduce the general concepts and working principles of space-time-coding digital metasurfaces and provide a comprehensive survey of recent advances and representative applications in this field. Specifically, we illustrate the examples of complicated wave manipulations, including harmonic beam control and programmable nonreciprocal effect. The fascinating strategy of space-time-coding opens the door to exciting scenarios for information systems, with abundant applications ranging from wireless communications to imaging and radars. We summarize this review by presenting the perspectives on the existing challenges and future directions in this fast-growing research field.
具有时空变化特性的时空调制超结构最近引起了极大的兴趣,并成为最引人入胜且最具前景的研究领域之一。与此同时,具有固有可编程特性的时空编码数字超表面成为实现时空调制的强大且通用的平台,已成功实现并用于在频谱和空间域中操纵电磁波。在本文中,我们系统地介绍了时空编码数字超表面的一般概念和工作原理,并全面综述了该领域的最新进展和代表性应用。具体而言,我们举例说明了复杂波操纵的实例,包括谐波波束控制和可编程非互易效应。时空编码这一引人入胜的策略为信息系统开启了令人兴奋的场景,其应用丰富多样,涵盖从无线通信到成像和雷达等领域。我们通过阐述对这个快速发展的研究领域中现有挑战和未来方向的看法来总结本综述。