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Updated: Sep 9, 2026

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Published on: June 8, 2018
Hundred-Channel Reconfigurable Quantum Teleportation
Yanbo Lou1, Jiabin Wang1, Yuyan Zou1
1East China Normal University, State Key Laboratory of Precision Spectroscopy, Joint Institute of Advanced Science and Technology, School of Physics, Shanghai 200062, China.
Abstract:
For achieving scalable and flexible quantum communication, a parallel quantum operation based on naturally spatially separable quantum resources is needed. In this Letter, we experimentally realize hundred-channel reconfigurable quantum teleportation with naturally spatially separable channels by integrating programmable holographic encoding with measurement-free all-optical feedforward. Specifically, programmable holographic engineering based on the weighted Gerchberg-Saxton algorithm is used to generate a reconfigurable 10×10 optical array of 100 independently addressable spatial modes, forming naturally spatially separable quantum channels. A measurement-free all-optical feedforward then enables the parallel transfer of quantum information across all channels. Within this architecture, we successfully teleport the entire 100-mode optical array and an image with fidelities beating the corresponding classical limits. Our results offer a viable route for realizing parallel quantum information processing.
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