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Two-dimensional frequency scanning from a metasurface-based Fabry-Perot resonant cavity

机译:从基于元表面的法布里 - 珀罗谐振腔的二维频率扫描

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摘要

A spatial angular filtering metasurface is introduced into a Fabry-Perot (FP) resonant cavity design for the frequency scanning performance in this paper. More specifically, asymmetrical unit cells printed on the metasurface enable the radiation energy to move in different directions as the frequency changes, and the released emissions, meanwhile, are split into dual-beams from the initial pencil beam. We continue to implement a patch array to provide excitation with the aim of achieving scanned beams in another dimension, and the proposed design ultimately demonstrates a two-dimensional dual-beam scanning performance with 42 degrees and 9 degrees scanning angles respectively in two dimensions of the coordinate system over a frequency range from 10.50 GHz-11.25 GHz. The proposed technique, by integrating a spatial angular filtering metasurface with a patch array feed to generate steerable beams, should offer an efficient way to fulfill FP resonant cavities with reconfigurable radiation.
机译:在本文中引入了空间角度过滤元表面,用于法布里 - 珀罗(FP)谐振腔设计,用于本文的频率扫描性能。更具体地,印刷在元表面上的不对称单元单元使得辐射能量随着频率变化而在不同方向上移动,并且同时被分成来自初始铅笔束的双光束。我们继续实施贴片阵列,以便在另一个维度实现扫描光束的目的提供激发,并且所提出的设计最终展示了具有42度和9度扫描角度的二维双光束扫描性能,分别在两个维度中分别为42度和9度扫描角度频率范围为10.50 GHz-11.25 GHz的坐标系。通过将空间角度滤波元件与贴片阵列进料集成以产生可转向光束的所提出的技术,应该提供具有可重新配置辐射的FP谐振腔的有效方法。

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