Tunable multiband polarization conversion and manipulation in vanadium dioxide-based asymmetric chiral metamaterial

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Abstract

Tunable multiband polarization conversion and manipulation are achieved by introducing vanadium dioxide (VO2) into a planar spiral asymmetric chiral metamaterial. Numerical simulations demonstrate that when VO2 is in the insulating state, circularly polarized electromagnetic waves are emitted at two distinct resonant frequencies. When VO2 is in the metallic state, the number of resonant frequencies changes from two to four. In addition, the initial left-handed and right-handed circularly polarized transmitted waves correspondingly transform into right and left ones. Moreover, the surface current distributions are studied in order to investigate the transformation behaviors of both the insulating and metallic states.

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Song, S., Ma, X., Pu, M., Li, X., Zhang, Z., Gao, P., & Luo, X. (2018). Tunable multiband polarization conversion and manipulation in vanadium dioxide-based asymmetric chiral metamaterial. Applied Physics Express, 11(4). https://doi.org/10.7567/APEX.11.042004

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