Taravati Sajjad, Eleftheriades George V
The Edward S. Rogers Sr. Department of Electrical and Computer Engineering, University of Toronto, Toronto, ON, Canada.
Nat Commun. 2021 Jul 20;12(1):4414. doi: 10.1038/s41467-021-24749-7.
Nonreciprocal radiation refers to electromagnetic wave radiation in which a structure provides different responses under the change of the direction of the incident field. Modern wireless telecommunication systems demand versatile apparatuses which are capable of full-duplex nonreciprocal wave processing and amplification, especially in the reflective state. To realize such a functionality, we propose an architecture in which a chain of series cascaded radiating patches are integrated with nonreciprocal phase shifters, providing an original and efficient apparatus for full-duplex reflective beamsteering. Such an ultrathin reflective metasurface can provide directive and diverse radiation beams, large wave amplification, steerable beams by simply changing the bias of the gradient active nonmagnetic nonreciprocal phase shifters, and is immune to undesired time harmonics. Having accomplished all these functionalities in the reflective state, the metasurface represents a conspicuous apparatus for efficient, controllable and programmable wave engineering.
非互易辐射是指一种电磁波辐射,其中结构在入射场方向改变时会提供不同的响应。现代无线通信系统需要能够进行全双工非互易波处理和放大的多功能设备,特别是在反射状态下。为了实现这种功能,我们提出了一种架构,其中一系列串联级联的辐射贴片与非互易移相器集成在一起,为全双工反射波束控制提供了一种新颖且高效的设备。这种超薄反射超表面可以提供定向且多样的辐射波束、大波放大、通过简单改变梯度有源非磁性非互易移相器的偏置来实现波束可控,并且不受不需要的时间谐波影响。在反射状态下实现了所有这些功能后,该超表面成为了一种用于高效、可控和可编程波工程的显著设备。