4.8 Article

Facile metagrating holograms with broadband and extreme angle tolerance

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LIGHT-SCIENCE & APPLICATIONS
卷 7, 期 -, 页码 -

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CHINESE ACAD SCIENCES, CHANGCHUN INST OPTICS FINE MECHANICS AND PHYSICS
DOI: 10.1038/s41377-018-0075-0

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资金

  1. National Key R&D Program of China [YS2018YFB110012]
  2. National Natural Science Foundation of China (NSFC) [11604217, 61522504, 61420106014, 11774145, 11734012, 11574218]
  3. Fundamental Research Funds for the Central Universities [21617410]
  4. Guangdong Provincial Innovation and Entrepreneurship Project [2016ZT06D081, 2017ZT07C071]
  5. Applied Science and Technology Project of the Guangdong Science and Technology Department [2017B090918001]
  6. Natural Science Foundation of the Shenzhen Innovation Committee [JCYJ20170412153113701]

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The emerging meta-holograms rely on arrays of intractable meta-atoms with various geometries and sizes for customized phase profiles that can precisely modulate the phase of a wavefront at an optimal incident angle for given wavelengths. The stringent and band-limited angle tolerance remains a fundamental obstacle for their practical application, in addition to high fabrication precision demands. Utilizing a different design principle, we determined that facile metagrating holograms based on extraordinary optical diffraction can allow the molding of arbitrary wavefronts with extreme angle tolerances (near-grazing incidence) in the visible-near-infrared regime. By modulating the displacements between uniformly sized meta-atoms rather than the geometrical parameters, the metagratings produce a robust detour phase profile that is irrespective of the wavelength or incident angle. The demonstration of high-fidelity meta-holograms and in-site polarization multiplexing significantly simplifies the metasurface design and lowers the fabrication demand, thereby opening new routes for flat optics with high performances and improved practicality.

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