An Ultrathin Frequency Selective Rasorber Based on Electromagnetic Composite Absorption

In this article, an ultrathin frequency selective rasorber (FSR) based on electromagnetic composite absorption is proposed. At first, a subwavelength unit (SLU) for electromagnetic composite absorption is designed and its mechanism is discussed under the excitation of electric field ( E -field) and...

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Veröffentlicht in:IEEE transactions on antennas and propagation 2022-08, Vol.70 (8), p.6813-6824
Hauptverfasser: Li, Meiling, Yang, Qihao, Zheng, Qi, Yang, Xue-Xia, Yi, Zixuan
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Sprache:eng
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Zusammenfassung:In this article, an ultrathin frequency selective rasorber (FSR) based on electromagnetic composite absorption is proposed. At first, a subwavelength unit (SLU) for electromagnetic composite absorption is designed and its mechanism is discussed under the excitation of electric field ( E -field) and magnetic field ( H -field) of incident electromagnetic waves separately. Next, a single layer ultrathin frequency selective absorber (UFSA) is constructed by eight SLUs, which are arranged by mirror symmetry and 90° rotation symmetry. Then, two UFSAs are designed, which work at different frequencies. The proposed ultrathin FSR, which is constructed by simply stacking two UFSAs, has a transmission band (2.09-2.69 GHz) and two absorption bands (two absorptive peaks above 90% at 2.05 and 2.78 GHz) on both sides of the transmission band. Importantly, compared to the traditional FSR, the profile of the FSR is low and 0.039\lambda _{c} . Finally, to verify the design and analysis, the proposed FSR was fabricated and measured. A good agreement between the results of the experiment and simulation can be obtained accordingly.
ISSN:0018-926X
1558-2221
DOI:10.1109/TAP.2022.3161270