Multicolor 3D meta-holography by broadband plasmonic modulation

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Abstract

As nanofabrication technology progresses, the emerging metasurface has offered unique opportunities for holography, such as an increased data capacity and the realization of polarization-sensitive functionality. Multicolor three-dimensional (3D)meta-hologram imaging is one of themost pursued applications formeta-hologram not yet realized. How to reduce the cross-talk among different colors in broad bandwidth designs is a critical question. On the basis of the off-axis illuminationmethod, we develop a novel way to overcome the cross-talk limitation and achieve multicolor meta-holography with a single type of plasmonic pixel. With this method, the usable data capacity can also be improved. It not only leads to a remarkable image quality, with a signal-to-noise ratio (SNR) five times better than that of the previousmeta-hologram designs, but also paves the way to new meta-hologramdevices, which mark an advance in the field of meta-holography. For example, a seven-color meta-hologram can be fabricated with a color gamut 1.39 times larger than that of the red, green, and blue (RGB) design. For the first time, a full-color meta-holographic image in the 3D space is also experimentally demonstrated. Our approach to expanding the information capacity of the meta-hologram is unique, which extends broad applications in data storage, security, and authentication.

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Li, X., Chen, L., Li, Y., Zhang, X., Pu, M., Zhao, Z., … Luo, X. (2016). Multicolor 3D meta-holography by broadband plasmonic modulation. Science Advances, 2(11). https://doi.org/10.1126/sciadv.1601102

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