- Accepted Paper
Quantum remote multichannel meta-holography with entangled photons
Phys. Rev. A - Accepted 3 September, 2026
DOI: https://doi.org/10.1103/c1g7-czdy
Phys. Rev. A - Accepted 3 September, 2026
DOI: https://doi.org/10.1103/c1g7-czdy
Integrating quantum information protocols with metasurfaces opens new opportunities for nonlocal and high-capacity optical information processing. Here, we experimentally demonstrate remote multi-channel vectorial meta-holography enabled by polarization entanglement between spatially separated photon pairs. By combining a compact, phase-robust Sagnac entanglement source with a full-Jones-matrix dielectric metasurface, we encode multiple elementary holographic contents and conditionally retrieve their individual and composite outputs through joint input–output polarization projections. The selected holographic content is identified through polarization-resolved coincidence measurements, whereas local single-channel detection alone does not provide access to the corresponding conditional channel information. Compared with single-channel detection, the coincidence reconstruction achieves an SNR enhancement of 4.74 dB. This work establishes a compact quantum-correlated metasurface platform for multi-channel holographic information processing, with potential applications in correlation-gated imaging, encrypted communication, and non-classical optical information processing.
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