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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Polarization angle independent metamaterial absorber based on circle-shaped resonators with interference theory
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Polarization angle independent metamaterial absorber based on circle-shaped resonators with interference theory

机译:基于干涉理论的基于圆形谐振器的偏振角无关的超材料吸收体

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摘要

We theoretically and numerically designed a perfect metamaterial absorber at microwave frequencies. The proposed design has a very simple geometry, wide band properties and provides perfect absorption for all polarization angles which is one of the most desired properties for an absorber structure to be used in the applications where the source polarization is unknown. In order to explain the absorption mechanism both numerical and theoretical analyses are carried out. Designed structure offers a perfect absorption at around 9.8 GHz. The resonance frequency does not change depending on the source wave polarization. In addition, it can be easily reconfigured for THz and infrared regimes for different applications such as sensors, defense systems and stealth technologies.
机译:我们在理论上和数值上设计了一个理想的微波超材料吸收器。所提出的设计具有非常简单的几何形状,宽带特性,并为所有偏振角提供了完美的吸收,这对于在源偏振未知的应用中使用的吸收体结构来说是最理想的特性之一。为了解释吸收机理,进行了数值和理论分析。设计的结构在9.8 GHz左右提供了完美的吸收。共振频率不根据源波极化而变化。此外,可以很容易地针对不同应用(例如传感器,防御系统和隐身技术)针对太赫兹和红外范围进行重新配置。

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