Enhanced and unidirectional photonic spin Hall effect in a plasmonic metasurface with S 4 symmetry

In this Letter, we report the significant enhancement of the photonic spin Hall effect (SHE) in a plasmonic metasurface with ${\rm S}_4$ symmetry. We find that an enhanced SHE of reflected light can occur in both horizontally and vertically polarized incident beams, and the maximum transverse displa...

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Veröffentlicht in:Optics letters 2021-05, Vol.46 (10), p.2537
Hauptverfasser: Liu, Jiaqing, Li, Xiao, Tao, Jiaqi, Dong, Daxing, Liu, Youwen, Fu, Yangyang
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container_start_page 2537
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creator Liu, Jiaqing
Li, Xiao
Tao, Jiaqi
Dong, Daxing
Liu, Youwen
Fu, Yangyang
description In this Letter, we report the significant enhancement of the photonic spin Hall effect (SHE) in a plasmonic metasurface with ${\rm S}_4$ symmetry. We find that an enhanced SHE of reflected light can occur in both horizontally and vertically polarized incident beams, and the maximum transverse displacement can approach half of the beam waist. Such a large displacement is caused by the non-resonant and near-zero pseudo-Brewster angles in the plasmonic metasurface. Owing to ${\rm S}_4$ symmetry, a unidirectional SHE is obtained in the metasurface, i.e., large and tiny transverse displacements are realized for a linearly polarized beam incident from the opposite side. This Letter provides a new, to the best of our knowledge, way to achieve an enhanced photonic SHE and offers more opportunities for designing spin-based nanophotonic devices.
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