论文标题
基于时空编码数字元面的双重谐波的任意操纵及其波动行为
Arbitrary manipulations of dual harmonics and their wave behaviors based on space-time-coding digital metasurface
论文作者
论文摘要
时空调制的元面积由于在时空和时域操纵电磁波(EM)波的额外自由度而引起了极大的关注。但是,现有技术具有有限的波控制功能,导致一些可行的方案,例如仅对一个特定谐波的调节。在这里,我们建议使用时空编码(STC)数字跨表面实现对任意双重谐波及其波行为的独立操纵。通过使用不同的STC序列到跨表面的反射阶段,可以同时实现两个所需谐波的独立相模式构型,从而进一步导致在两个谐波频率下进行独立的光束成形。开发了一种分析理论,以提供光谱和空间束的任意双谐波操纵中的物理见解,这通过具有良好协议的实验来验证。提出的STC策略提供了一种设计多功能可编程系统的新方法,该系统将找到潜在的应用程序,例如认知雷达和多用户无线通信。
Space-time modulated metasurfaces have attracted significant attention due to the additional degree of freedom in manipulating the electromagnetic (EM) waves in both space and time domains. However, the existing techniques have limited wave control capabilities, leading to just a few feasible schemes like regulation of only one specific harmonic. Here, we propose to realize independent manipulations of arbitrarily dual harmonics and their wave behaviors using a space-time-coding (STC) digital metasurface. By employing different STC sequences to the reflection phase of the metasurface, independent phase-pattern configurations of two desired harmonics can be achieved simultaneously, which further leads to independent beam shaping at the two harmonic frequencies. An analytical theory is developed to offer the physical insights in the arbitrary dual-harmonic manipulations of spectra and spatial beams, which is verified by experiments with good agreements. The presented STC strategy provides a new way to design multifunctional programmable systems, which will find potential applications such as cognitive radar and multi-user wireless communications.