首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Quarter mode rectangular cavity-based perfect metamaterial absorber in the terahertz region
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Quarter mode rectangular cavity-based perfect metamaterial absorber in the terahertz region

机译:三赫兹地区基于矩形矩形腔的完美超材料吸收器

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摘要

In this work, we present the analysis and design of a perfect metamaterial absorber (MA) based on quarter mode rectangular cavity in the terahertz region. This structure is consisted of a metal plate where three different size quarter mode rectangular cavities are vertically placed on. Based on rectangular-cavity-theory, a formula is proposed to calculate the resonant frequency, which provides a guidance for designing MAs of such type. In terms of normal incidence, the simulated results show that the MA has three resonance points on 4.1301?THz, 4.6051?THz and 5.1088?THz, respectively, which is in good agreement with the calculated results. Furthermore, we present the distribution of E-field in the cavity and use the standing wave theory to explain the physical mechanism of the perfect absorption. These results verify the application of resonant cavities in the field of MA.
机译:在这项工作中,我们介绍了基于太赫兹地区的四分之一模式矩形腔的完美超材料吸收器(MA)的分析和设计。 该结构由金属板组成,其中三个不同尺寸的矩形腔垂直放置在。 基于矩形腔理论,提出了一种公式来计算谐振频率,这为设计这种类型的MAS提供了指导。 在正常发病率方面,模拟结果表明,MA分别在4.1301〜4.6051?THz和5.1088 ZHZ和5.1088?THz上有三个共振点,这与计算结果吻合良好。 此外,我们介绍了腔体中的E场分布,并使用常设波理论来解释完美吸收的物理机制。 这些结果验证了在MA领域中的谐振空腔的应用。

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