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Decimeter-depth and polarization addressable color 3D meta-holography

Author

Listed:
  • Di Wang

    (Beihang University)

  • Yi-Long Li

    (Beihang University)

  • Xin-Ru Zheng

    (Northwestern Polytechnical University)

  • Ruo-Nan Ji

    (Northwestern Polytechnical University
    Chinese Academy of Sciences)

  • Xin Xie

    (Northwestern Polytechnical University)

  • Kun Song

    (Northwestern Polytechnical University)

  • Fan-Chuan Lin

    (Beihang University)

  • Nan-Nan Li

    (Beihang University)

  • Zhao Jiang

    (Beihang University)

  • Chao Liu

    (Beihang University)

  • Yi-Wei Zheng

    (Beihang University)

  • Shao-Wei Wang

    (Chinese Academy of Sciences)

  • Wei Lu

    (Chinese Academy of Sciences)

  • Bao-Hua Jia

    (RMIT University)

  • Qiong-Hua Wang

    (Beihang University)

Abstract

Fueled by the rapid advancement of nanofabrication, metasurface has provided unprecedented opportunities for 3D holography. Large depth 3D meta-holography not only greatly increases information storage capacity, but also enables distinguishing of the relative spatial relationship of 3D objects, which has important applications in fields like optical information storage and medical diagnosis. Although the methods based on Fresnel diffraction theory can reconstruct the real depth information of 3D objects, the maximum depth is only 2 mm. Here, we develop a 3D meta-holography based on angular spectrum diffraction theory to break through the depth limit. By developing the angular spectrum diffraction theory into meta-holography, the metasurface structure with independent polarization control is used to create a polarization multiplexing 3D meta-hologram. The fabricated amorphous silicon metasurface increases the depth range by 47.5 times and realizes 0.95 dm depth reconstruction for polarization independent and different color 3D meta-hologram in visible. Such polarization controlled large-depth color meta-holography is expected to open avenue for data storage, display, information security and virtual reality.

Suggested Citation

  • Di Wang & Yi-Long Li & Xin-Ru Zheng & Ruo-Nan Ji & Xin Xie & Kun Song & Fan-Chuan Lin & Nan-Nan Li & Zhao Jiang & Chao Liu & Yi-Wei Zheng & Shao-Wei Wang & Wei Lu & Bao-Hua Jia & Qiong-Hua Wang, 2024. "Decimeter-depth and polarization addressable color 3D meta-holography," Nature Communications, Nature, vol. 15(1), pages 1-10, December.
  • Handle: RePEc:nat:natcom:v:15:y:2024:i:1:d:10.1038_s41467-024-52267-9
    DOI: 10.1038/s41467-024-52267-9
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