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Reconfigurable all-dielectric metamaterial frequency selective surface based on high-permittivity ceramics

机译:基于高介电常数陶瓷的可重构全介电超材料频率选择表面

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摘要

Based on effective medium theory and dielectric resonator theory, we propose the design of reconfigurable all-dielectric metamaterial frequency selective surfaces (FSSs) using high-permittivity ceramics. The FSS is composed of ceramic resonators with different band stop responses under front and side incidences. By mechanically tuning the orientation of the ceramic resonators, reconfigurable electromagnetic (EM) responses between two adjacent stopbands can be achieved. The two broad stopbands originate from the first two resonant modes of the ceramic resonators. As an example, a reconfigurable FSS composed of cross-shaped ceramic resonators is demonstrated. Both numerical and experimental results show that the FSS can switch between two consecutive stopbands in 3.55–4.60 GHz and 4.54–4.94 GHz. The design method can be readily extended to the design of FSSs in other frequencies for high-power applications.
机译:基于有效介质理论和介电共振器理论,我们提出了使用高介电常数陶瓷的可重构全介电超材料频率选择表面(FSS)的设计。 FSS由在正面和侧面入射情况下具有不同带阻响应的陶瓷谐振器组成。通过机械调整陶瓷谐振器的方向,可以在两个相邻的阻带之间实现可重构的电磁(EM)响应。两个较宽的阻带源自陶瓷谐振器的前两个谐振模式。作为示例,说明了由十字形陶瓷谐振器组成的可重构FSS。数值和实验结果均表明,FSS可以在3.55–4.60 GHz和4.54–4.94 GHz的两个连续阻带之间切换。该设计方法可以很容易地扩展到大功率应用中其他频率的FSS设计。

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