Metasurface orbital angular momentum holography

Голография орбитального углового момента на основе метаповерхности
Patrice Genevet, Stefan A. Maier, Xinyuan Fang, Haoran Ren, Sébastien Chenot, Virginie Brändli, B. Damilano, Peinan Ni, Gauthier Brière, Rajath Sawant, Sébastien Héron, S. Vézian
2019-07-19

GaN nanopillarslensless holographic reconstructionmetasurfacesorbital angular momentum holographyorbital angular momentum multiplexing
Allowing subwavelength-scale-digitization of optical wavefronts to achieve complete control of light at interfaces, metasurfaces are particularly suited for the realization of planar phase-holograms that promise new applications in high-capacity information technologies. Similarly, the use of orbital angular momentum of light as a new degree of freedom for information processing can further improve the bandwidth of optical communications. However, due to the lack of orbital angular momentum selectivity in the design of conventional holograms, their utilization as an information carrier for holography has never been implemented. Here we demonstrate metasurface orbital angular momentum holography by utilizing strong orbital angular momentum selectivity offered by meta-holograms consisting of GaN nanopillars with discrete spatial frequency distributions. The reported orbital angular momentum-multiplexing allows lensless reconstruction of a range of distinctive orbital angular momentum-dependent holographic images. The results pave the way to the realization of ultrahigh-capacity holographic devices harnessing the previously inaccessible orbital angular momentum multiplexing.
1
Demonstrates metasurface orbital angular momentum holography using GaN nanopillar meta-holograms with discrete spatial frequency distributions.
2
Orbital angular momentum multiplexing enables lensless reconstruction of multiple distinctive, orbital-angular-momentum-dependent holographic images.
3
The approach suggests ultrahigh-capacity holographic devices based on previously inaccessible orbital angular momentum multiplexing.
4
The meta-holograms provide strong orbital angular momentum selectivity, overcoming a limitation of conventional holograms.

GaN nanopillar metasurface meta-holograms for orbital angular momentum holography

Orbital angular momentum selectivity and multiplexing enabling lensless reconstruction of orbital angular momentum-dependent holographic images

Publication Details
Publication Date
2019-07-19
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Patrice Genevet
Stefan A. Maier
Xinyuan Fang
Haoran Ren
Sébastien Chenot
Virginie Brändli
B. Damilano
Peinan Ni
Gauthier Brière
Rajath Sawant
Sébastien Héron
S. Vézian
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%