带通滤波器
超材料
电介质
多波段设备
阻抗匹配
材料科学
谐振器
介电常数
电阻抗
光学
极化(电化学)
天线罩
选择性表面
光电子学
物理
电气工程
天线(收音机)
工程类
物理化学
量子力学
化学
作者
Fei Yu,Jun Wang,Jiafu Wang,Hua Ma,Hongliang Du,Zhuo Xu,Shaobo Qu
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.
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