论文标题
反射式阵列和元图反射器作为衍射光栅
Reflectarrays and metasurface reflectors as diffraction gratings
论文作者
论文摘要
可重构反射器在未来的电信系统中具有巨大的潜力,并且现在积极研究了完整和可调反射控制的设计和实现方法。反射阵列是实现扫描反射器的经典方法,它基于阶段阵列理论(所谓的广义反射定律)和反射响应的物理光学近似。为了克服反射阵列技术的局限性,研究人员使用衍射光栅理论积极研究不均匀的跨膜。为了使这些设备可调节并充分意识到它们的潜力,有必要从统一的角度统一两种方法并研究可重构反射器。在这里,我们提供了一个有关反射阵列和反射元依额的基本教程,并解释了它们源于衍射理论的共同基本属性。本教程适合研究生和研究生,希望将有助于对分阶段和衍射光栅有更深入的了解。
Reconfigurable reflectors have a significant potential in future telecommunication systems, and approaches to the design and realization of full and tunable reflection control are now actively studied. Reflectarrays, being the classical approach to realization of scanning reflectors, are based on the phased-array theory (the so-called generalized reflection law) and the physical optics approximation of the reflection response. To overcome the limitations of the reflectarray technology, researchers actively study inhomogeneous metasurfaces, using the theory of diffraction gratings. In order to make these devices tunable and fully realize their potential, it is necessary to unify the two approaches and study reconfigurable reflectors from a unified point of view. Here, we offer a basic tutorial on reflectarrays and reflecting metasufaces, explaining their common fundamental properties that stem from the diffraction theory. This tutorial is suitable for graduate and post-graduate students and hopefully will help to develop more deeper understanding of both phased arrays and diffraction gratings.