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Programmable Metamaterials for Software-Defined Electromagnetic Control: Circuits, Systems, and Architectures

机译:用于软件定义电磁控制的可编程超材料:电路,系统和架构

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摘要

Metamaterials and their two-dimensional analogues, metasurfaces, have recently attracted enormous attention because of their powerful control over electromagnetic (EM) waves from microwave to visible range. Moreover, by introducing explicit control of its sub-wavelength unit cells, a metamaterial can become programmable. Programmable metamaterials may not only host multiple EM functionalities that can be chosen or combined through simple software directives, but also be provided with means to adapt to the environment or communicate with other metamaterials, thereby enabling a myriad of applications in sensing, imaging, or communications. The realization of such a software-driven cyber-physical vision comes, however, at the cost of significant hardware requirements. In this paper, recent progress in the field of programmable metasurfaces is reviewed, cutting across layers from the application down to the device and technology levels. The main aim is to present the current status, main benefits, and key challenges of this thriving research area with a tutorial spirit and from a hardware perspective.
机译:超材料及其二维类似物,Metasurfaces最近引起了巨大的关注,因为它们对微波到可见范围的电磁(EM)波的强大控制。此外,通过引入其子波长单元电池的显式控制,超材料可以变得可编程。可编程的超材料可能不仅可以通过简单的软件指令托管可以选择或组合的多个EM功能,而且还可以提供适应环境或与其他超材料通信的手段,从而实现传感,成像或通信中的无数应用程序。然而,实现了这种软件驱动的网络物理视觉的成本,具有重要的硬件要求。在本文中,综述了可编程元措施领域的最新进展,从应用到设备和技术水平跨过层次。主要目的是通过辅导精神和硬件观点介绍这个繁荣的研究区的当前状态,主要利益和关键挑战。

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