Achieving a multi-band metamaterial perfect absorber via a hexagonal ring dielectric resonator

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Abstract

A multi-band absorber composed of high-permittivity hexagonal ring dielectric resonators and a metallic ground plate is designed in the microwave band. Near-unity absorptions around 9.785 GHz, 11.525 GHz, and 12.37 GHz are observed for this metamaterial absorber. The dielectric hexagonal ring resonator is made of microwave ceramics with high permittivity and low loss. The mechanism for the near-unity absorption is investigated via the dielectric resonator theory. It is found that the absorption results from electric and magnetic resonances where enhanced electromagnetic fields are excited inside the dielectric resonator. In addition, the resonance modes of the hexagonal resonator are similar to those of standard rectangle resonators and can be used for analyzing hexagonal absorbers. Our work provides a new research method as well as a solid foundation for designing and analyzing dielectric metamaterial absorbers with complex shapes.

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Li, L. Y., Wang, J., Du, H. L., Wang, J. F., & Qu, S. B. (2015). Achieving a multi-band metamaterial perfect absorber via a hexagonal ring dielectric resonator. Chinese Physics B, 24(6). https://doi.org/10.1088/1674-1056/24/6/064201

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