Paper
5 September 2019 Ultra-high-Q dielectric metasurface for polarization conversion
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Abstract
In this work, a novel method to obtain all-dielectric toroidal response metasurfaces in the W-band and THz range is demonstrated. Two designs are proposed, a symmetric and asymmetric disk metasurface. The first design is intended to corroborate the theoretical analysis, demonstrating the excitation of a strong toroidal mode resonance at 93.2 GHz. Then, the second design is used to demonstrate that symmetry-breaking variations in the disk dimensions, could lead to birefringent metasurfaces, affecting the polarization of the impinging light. Two structures are designed, a polarization beam splitter and a polarization converter. Such devices are difficult to obtain at the target frequency range with low absorption, so they could be of particular interest for the next generation of 5G communications and THz devices.
© (2019) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
J. F. Algorri, D. Zografopoulos, A. Ferraro, B. Garcia-Camara, R. Vergaz, R. Beccherelli, and J. M. Sanchez-Pena "Ultra-high-Q dielectric metasurface for polarization conversion", Proc. SPIE 11080, Metamaterials, Metadevices, and Metasystems 2019, 110802O (5 September 2019); https://doi.org/10.1117/12.2527908
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KEYWORDS
Dielectric polarization

Beam splitters

Dielectrics

Polarization

Phase shifts

Scattering

Silicon

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