Design of tunable silicon metasurfaces with cross-polarization transmittance over 80%

  • Ee, Ho-Seok
  • Park, Hong-Gyu
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초록

We designed highly efficient, mechanically tunable metasurfaces based on an array of crystalline silicon nanoposts on stretchable substrates. The metasurface can continuously tune the wavefront of light by changing the lattice constant of the silicon nanoposts with a high transmission efficiency at all tuning ranges. Systematic numerical simulations were performed to determine the optimized structural parameters of the nanoposts, in which the cross-polarization transmittance was maximized. Transmission efficiency was maintained at over 80% with a maximum stretch ratio of similar to 137% (2.9 x flat zoom lens) and at over 75% with a maximum stretch ratio of similar to 171% (1.9 x flat zoom lens) in the tunable metasurface at lambda = 680 nm. The simulation also showed that the tunable metasurface could be optimized at other wavelengths between 580 and 730 nm. We believe that the tunable metasurfaces will be useful for a variety of applications including information technology, biomedical sciences, integrated optics, optical communications, imaging, flat displays, or wearable consumer electronics.

키워드

metasurfacetunable metasurfacereconfigurable metasurfaceartificially engineered materialsflat optical componentsRECONFIGURABLE METASURFACESDIELECTRIC METASURFACESSTRETCHABLE SUBSTRATELIGHTPHASERESOLUTIONOPTICSLENS
제목
Design of tunable silicon metasurfaces with cross-polarization transmittance over 80%
저자
Ee, Ho-SeokPark, Hong-Gyu
DOI
10.1088/1402-4896/aacd8b
발행일
2018-08
유형
Article
저널명
Physica Scripta
93
8