Leaky-Wave Radiations by Modulating Surface Impedance on Subwavelength Corrugated Metal Structures

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Abstract

One-dimensional (1D) subwavelength corrugated metal structures has been described to support spoof surface plasmon polaritons (SPPs). Here we demonstrate that a periodically modulated 1D subwavelength corrugated metal structure can convert spoof SPPs to propagating waves. The structure is fed at the center through a slit with a connected waveguide on the input side. The subwavelength corrugated metal structure on the output surface is regarded as metasurface and modulated periodically to realize the leaky-wave radiation at the broadside. The surface impedance of the corrugated metal structure is modulated by using cosine function and triangle-wave function, respectively, to reach the radiation effect. Full wave simulations and measuremental results are presented to validate the proposed design.

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Cai, B. G., Li, Y. B., Ma, H. F., Jiang, W. X., Cheng, Q., & Cui, T. J. (2016). Leaky-Wave Radiations by Modulating Surface Impedance on Subwavelength Corrugated Metal Structures. Scientific Reports, 6. https://doi.org/10.1038/srep23974

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