A reconfigurable wideband metamaterial absorber based on lumped components is proposed. The wideband can be tuned with a −10 dB bandwidth of about 1.5 GHz by selecting certain values of the resistors and the inductors. The simulated results demonstrate that the designed absorber has good performance regarding polarisation insensitiveness and wide angles of incident waves for both TE and TM polarisations. The waveguide measurement method is used to verify the simulated result of the wideband metamaterial absorber.
In this research, a new tunable dual-band metamaterial absorber with wide-angle TE and TM polarization stability is proposed. The designed absorber exhibits two high absorption peaks at 5.1 and 8.5 GHz with absorption peaks of 96 and 97%, respectively. The unit cell consists of a metallic background plane and two closed rings including two groups of T-shaped resonators, separated by a low-cost dielectric layer with thickness of 0.9 mm. By tuning the distance between the T-shaped structures and closed ring, the corresponding two resonance frequencies can be effectively separated with high absorption over 95% while keeping the closed ring unchanged. The simulated results demonstrate that the designed absorber has good characteristics of high absorption rates, polarization-insensitiveness and wide angle of incident waves. A waveguide experiment is performed to verify the good agreement between the simulated and measured results.
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