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首页> 外文期刊>Journal of Electronic Materials >Design of Polarization- and Incident Angle-Independent Perfect Metamaterial Absorber with Interference Theory
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Design of Polarization- and Incident Angle-Independent Perfect Metamaterial Absorber with Interference Theory

机译:基于干涉理论的偏振和入射角无关的完美超材料吸收体设计

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摘要

A perfect metamaterial absorber is realized and its properties are theoretically, numerically and experimentally investigated at microwave frequencies. In addition, polarization and incident angle independencies are also tested for the structure. Theoretical, numerical and experimental results show that the proposed model has many advantages compared to those in the literature, such as perfect absorption, polarization and incident angle independencies, very simple design, and operation over a sufficiently wide band. A simple configuration is chosen for the proposed model so that it can be easily tuned for other frequency regimes to realize new absorbers for applications such as sensors and stealth technology.
机译:实现了一种完美的超材料吸收体,并在微波频率下对其特性进行了理论,数值和实验研究。此外,还针对该结构测试了偏振和入射角的独立性。理论,数值和实验结果表明,与文献中的模型相比,该模型具有许多优势,例如完美的吸收,偏振和入射角无关性,非常简单的设计以及在足够宽的频带上工作。为建议的模型选择了一个简单的配置,以便可以轻松地针对其他频率范围进行调整,以实现用于传感器和隐身技术等应用的新型吸收器。

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