A novel metamaterial filter with stable passband performance based on frequency selective surface

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Abstract

In this paper, a novel metamaterial filter based on frequency selective surface (FSS) is proposed. Using the mode matching method, we theoretically studied the transmission performance of the structure. Results show that, by rotating its neighboring elements 90 degree, the novel filter has a better stability to angle of incidence than traditional structures for TE and TM polarization. As the incident angles vary from 0 to 50 degrees, the metamaterial filter exhibits a transmittance higher than 0.98 and the center frequency slightly shifts downward (from 10 GHz to 0.96 GHz) for TE polarization. For TM polarization, a transmittance of 0.98 is achieved and the center frequency retains 0.96 GHz with the varying of the incident angles. Furthermore, an experimental prototype fabricated was tested in a microwave chamber, and the measured results show good agreement with the simulated ones. © 2014 Author(s).

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Fang, C. Y., Gao, J. S., & Liu, H. (2014). A novel metamaterial filter with stable passband performance based on frequency selective surface. AIP Advances, 4(7). https://doi.org/10.1063/1.4890108

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