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Polarization and angle insensitive dual-band bandpass frequency selective surface using all-dielectric metamaterials

机译:使用全介电超材料的偏振和角度不敏感的双频带带通频率选择表面

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摘要

In this paper, we demonstrate a dual-band bandpass all-dielectric frequency selective surface (FSS), the building elements of which are high-permittivity ceramic particles rather than metallic patterns. With proper structural design and parameter adjustment, the resonant frequency can be tuned at will. Dual-band bandpass response can be realized due to the coupling between electric and magnetic resonances. As an example, a dual-band bandpass FSS is designed in Ku band, which is composed of two-dimensional periodic arrays of complementary quatrefoil structures (CQS) cut from dielectric plates. Moreover, cylindrical dielectric resonators are introduced and placed in the center of each CQS to broaden the bandwidth and to sharpen the cut-off frequency. Theoretical analysis shows that the bandpass response arises from impedance matching caused by electric and magnetic resonances. In addition, effective electromagnetic parameters and dynamic field distributions are presented to explain the mechanism of impedance matching. The proposed FSS has the merits of polarization independence, stable transmission, and sharp roll-off frequency. The method can also be used to design all-dielectric FSSs with continuum structures at other frequencies.
机译:在本文中,我们演示了一个双频带带通全介电频率选择表面(FSS),其构建元素是高介电常数的陶瓷颗粒而不是金属图案。通过适当的结构设计和参数调整,可以随意调整谐振频率。由于电共振和磁共振之间的耦合,可以实现双频带带通响应。例如,在Ku波段中设计了一个双波段带通FSS,它由从电介质板上切下的互补四叶形结构(CQS)的二维周期性阵列组成。此外,圆柱形介电谐振器被引入并放置在每个CQS的中心,以加宽带宽并提高截止频率。理论分析表明,带通响应是由电和磁共振引起的阻抗匹配引起的。此外,提出了有效的电磁参数和动态场分布来解释阻抗匹配的机理。所提出的FSS具有偏振独立性,稳定的传输和急剧的滚降频率的优点。该方法还可用于设计在其他频率具有连续结构的全电介质FSS。

著录项

  • 来源
    《Journal of Applied Physics》 |2016年第13期|134104.1-134104.6|共6页
  • 作者单位

    College of Science, Air Force Engineering University, Xi'an 710051, China,China Astronaut Research and Training Center, Beijing 100094, China;

    College of Science, Air Force Engineering University, Xi'an 710051, China;

    College of Science, Air Force Engineering University, Xi'an 710051, China;

    College of Science, Air Force Engineering University, Xi'an 710051, China;

    College of Science, Air Force Engineering University, Xi'an 710051, China;

    Electronic Materials Research Laboratory, Xi'an Jiaotong University, Xi'an 710049, China;

    College of Science, Air Force Engineering University, Xi'an 710051, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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