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MEMS switches controlled multi-split ring resonator as a tunable metamaterial component

机译:MEMS开关控制的多裂环谐振器作为可调超材料组件

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摘要

Based on the multisplit-ring resonator (MSRR) with MEMS switches, a tunable metamaterial component is proposed in this paper to realize multiband applications. Numerical simulations are carried out to verify the tunable capacity of the proposed structure. The simulated results show that the resonance frequency of the metamaterial component shifts to higher frequencies when the MEMS switches are at different states, and depends strongly on the place, state and microbeam height of MEMS switches. Moreover, the large tunable range can be obtained by controlling the up state or down state of MEMS switches, while the small tunable range can be obtained by controlling microbeam height of MEMS switches. That is, such controlling ways can realize both rough and minor tunable metamaterial component. The tunable method proposed in this paper is of great practical values in designing tunable metamaterial and negative refractive index material.
机译:基于带MEMS开关的多裂环谐振器(MSRR),本文提出了一种可调谐的超材料组件,以实现多频带应用。进行了数值模拟,以验证所提出结构的可调能力。仿真结果表明,当MEMS开关处于不同状态时,超材料组件的谐振频率会移至更高的频率,并且强烈取决于MEMS开关的位置,状态和微束高度。此外,通过控制MEMS开关的向上或向下状态可以获得较大的可调范围,而通过控制MEMS开关的微束高度可以获得较小的可调范围。即,这样的控制方式可以实现粗糙的和微小的可调谐超材料成分。本文提出的可调方法在设计可调超材料和负折射率材料方面具有很大的实用价值。

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