Dynamic Beam Switching with Shiftable Multimodal Anti-Reflective Coatings

S. Marcus, A. Epstein
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Abstract

The implementation of non-specular reflection, generally referred to as perfect anomalous reflection, has been the realm of complex periodic metasurfaces consisting of multiple, painstakingly-designed meta-atoms. It has recently been shown that similar effects can be obtained from a basic periodic surface (BPS) with arbitrary properties, coated with several uniform dielectric layers which serve as a multimodal anti-reflective coating (MARC). In spite of its simplicity, the BPS-MARC combination can be easily designed to suppress all components of the discrete propagating Floquet-Bloch (FB) spectrum except the one in the design direction of interest. We show herein that the design direction of the reflected beam can be controlled by simply shifting the MARC relative to the BPS with the aid, for example, of a piezoelectric actuator. Such control enables dynamic beam switching from one radiation angle to another with almost-perfect efficiency. The MARC layers for this purpose are designed analytically and verified by full-wave computations, thus providing a new and conceptually simple method of efficient wave control in real time, highly useful for signal rerouting and multiplexing in reconfigurable antenna systems.
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可移动多模态抗反射涂层的动态光束切换
非镜面反射的实现,通常被称为完美反常反射,一直是由多个精心设计的元原子组成的复杂周期性超表面的领域。最近的研究表明,在具有任意性质的基本周期表面(BPS)上涂上几个均匀的介电层作为多模态抗反射涂层(MARC),也可以获得类似的效果。尽管它很简单,但BPS-MARC组合可以很容易地设计成抑制离散传播弗洛克-布洛赫(FB)频谱的所有分量,除了设计方向上感兴趣的分量。我们在此表明,反射光束的设计方向可以通过简单地移动MARC相对于BPS的辅助来控制,例如,压电驱动器。这种控制使光束能够以近乎完美的效率从一个辐射角切换到另一个辐射角。为此,对MARC层进行了解析设计,并通过全波计算进行了验证,从而提供了一种新的、概念简单的实时有效波控制方法,对可重构天线系统中的信号重路由和多路复用非常有用。
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