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Broadband frequency-reconfigurable metamaterial absorber using switchable ground plane

机译:使用可切换接地平面的宽带频率可重构超材料吸收器

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摘要

In this study, we propose a broadband frequency-reconfigurable metamaterial absorber using a novel switchable ground plane (SGP). A double resistive square-ring resonator is introduced for broadband absorption. The distance between the top resonator pattern and the ground plane determines the resonant frequency; the proposed SGP is thus capable of switching the absorption frequency band. The SGP can be either ground or reactive, by switching the PIN diodes on and off, respectively. The SGP is placed as the middle layer, between the top pattern and the bottom ground plane. In the low frequency band, the SGP becomes reactive and the bottom ground plane works as the ground plane of the absorber. In the high frequency band, the SGP works as the ground plane and the bottom ground plane does not affect the absorber. The proposed idea is demonstrated via full-wave simulations and measurements. The absorption of the fabricated sample with 27 × 27 unit cells is measured under normal incidence. When the PIN diodes of the SGP are turned on, an absorption higher than 90% is achieved between 3.5–11 GHz. When the PIN diodes of the SGP are turned off, an absorption higher than 90% is achieved between 1.7–5.2 GHz.
机译:在这项研究中,我们提出了一种使用新型可切换接地平面(SGP)的宽带频率可重构超材料吸收器。引入了双电阻方环谐振器以实现宽带吸收。顶部谐振器图案和接地层之间的距离决定了谐振频率。因此,所提出的SGP能够切换吸收频带。通过分别打开和关闭PIN二极管,SGP可以接地或无功。 SGP作为中间层放置在顶部图案和底部接地层之间。在低频段,SGP变为电抗,底部接地层用作吸收器的接地层。在高频段,SGP用作接地层,底部接地层不影响吸收器。通过全波模拟和测量证明了所提出的想法。在法向入射条件下测量所制作的样品具有27××27个晶胞的吸收率。当SGP的PIN二极管导通时,在3.5-11 GHz之间可实现90%以上的吸收。当SGP的PIN二极管关断时,在1.7–5.2 GHz之间可获得90%以上的吸收。

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