Abstract
We investigated numerically the design of all-dielectric chiral metasurface based on elliptic dielectric resonators (EDRs) over the frequency band 10–20 GHz. The effect of the EDR geometry (ellipticity and orientation) on the optical activity (OA) propriety of the chiral metasurface behaviors was studied from simulated transmitted coefficients of right-hand circularly polarized (RCP) and left-hand circularly polarized (LCP) waves, the polarization state $\eta$ and azimuth rotation angle $\pmb{\theta}$. The proposed chiral metasurface can work as polarization rotator device operating at microwave frequencies.
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