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March 7, 2016ACS Photonics288 citations

Efficient Polarization-Insensitive Complex Wavefront Control Using Huygens’ Metasurfaces Based on Dielectric Resonant Meta-atoms

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KCKatie E. ChongXiamen University MalaysiaLWLei WangSouthwest University of Science and TechnologyISIsabelle StaudeInstitute of Solid State Physics

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Abstract

Metasurfaces have shown great promise for the control of optical wavefronts, thus opening new pathways for the development of efficient flat optics. In particular, Huygens’ metasurfaces based on all-dielectric resonant meta-atoms have already shown a huge potential for practical applications with their polarization insensitivity and high transmittance efficiency. Here, we experimentally demonstrate a polarization-insensitive holographic Huygens’ metasurface based on dielectric resonant meta-atoms capable of complex wavefront control at telecommunication wavelengths. Our metasurface produces a hologram image in the far-field with 82% transmittance efficiency and 40% imaging efficiency. Such efficient complex wavefront control shows that Huygens’ metasurfaces based on resonant dielectric meta-atoms are a big step toward practical applications of metasurfaces in wavefront design related technologies, including computer-generated holograms, ultrathin optics, security, and data storage devices.

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Cite This Study

Chong et al. (2016) studied this question.

synapsesocial.com/papers/6a63bb0baca57fe96528c721https://doi.org/10.1021/acsphotonics.5b00678
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