Electromagnetic time-harmonic and static field polygonal rotator with homogeneous materials

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Abstract

We propose a scheme of designing polygonal rotator with homogenous materials by using linear coordinate transformation. Our strategy is available for both time-harmonic electromagnetic field case and static field case. In particular, we found that only one anisotropic material is needed in static field case, and the density of field in the central region can be altered to be denser or sparser, or stay the same. The magnetostatic field rotator can be realized by multilayered structure composed of ferromagnetic materials and superconductor, and the direct current rotator can be realized by metals with different conductivity. Numerical results verify the effectiveness of our strategy in both time-harmonic field case and static field case.

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Gao, W., Wang, H., & Yu, F. (2019). Electromagnetic time-harmonic and static field polygonal rotator with homogeneous materials. Scientific Reports, 9(1). https://doi.org/10.1038/s41598-019-51637-4

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