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Design of Real-Time Tunable-Focus Active Metasurfaces

机译:实时可调焦主动元锉设计的设计

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摘要

A design of real-time tunable-focus reconfigurable active metasurfaces is proposed in this paper. With the element space of 16 mm (0.458λ), a 1-bit real-time reconfigurable active metasurface element is successfully designed to work at 8.595 GHz. From 7.71 GHz to 9.43 GHz, the element realized a 1-bit phase shift with a relative bandwidth of 20% within 180° ± 30°. Moreover, a negligible cross polarization is obtained and the amplitude loss is less than 0.8 dB for two states. Furthermore, the reflective metasurface is designed with an aperture size of 512mm×512mm (32×32) and aperture efficiency of 43.7% for the tunable beam focusing. By effectively designing the states of each element on the metasurface array, a single-beam focusing on θ = 0° and dual-beam focusing on θ = ±15° are achieved, respectively. Finally, the full wave simulation is performed to demonstrate to the functionalities and effects of the proposed metasurfaces, whose results are in good agreement with the theoretical design.
机译:实时可调焦距可重构活跃metasurfaces的设计在本文提出。为16毫米(0.458λ)的元空间,一个1比特的实时重新配置的有源超颖表面元件被成功地设计为工作在8.595千兆赫。从7.71 GHz至9.43千兆赫,该元件实现具有的在180°±30°20%的相对带宽的1比特的相移。此外,获得具有可忽略的交叉极化和振幅损失为两种状态小于0.8分贝。此外,反射超颖表面被设计成512毫米×512毫米的孔径尺寸(32×32)和43.7%的可调谐光束聚焦孔径效率。通过有效地设计的超颖表面阵列上的每个装置的状态,一个单光束聚焦于θ= 0°和双束聚焦在θ=±15分别实现°。最后,进行全波模拟演示的功能和所提出的metasurfaces,其结果与理论设计吻合较好的效果。

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