Researchers have, for the first time, successfully transmitted a four-qubit cluster state over 29 kilometers of optical fiber, overcoming exponential photon loss that previously limited such transmissions. The team directly generated the entangled state using coherent control of a parametric generation process, eliminating the need for a resource-intensive controlled-phase gate. To process the state, they introduced a novel technique, chirped pulse modulation, enabling beam splitting for time-bins through reconfigurable Fourier-domain pulse shaping; this approach establishes complex quantum resources fully compatible with existing telecommunication infrastructure.
Four-qubit Entanglement Sent Over 29km Of Optical Fiber
Researchers have, for the first time, successfully transmitted a four-qubit cluster state over 29 kilometers of optical fiber, overcoming exponential photon loss that previously limited such transmissions. The team directly generated…
Quantum Zeitgeist
Publisher
Oct 1, 2026 at 7:54 AM UTC · 5 분 소요

Multi-Level Time-Bin Encoding for Fiber Transmission
Multi-level encoding enabled the first transmission of a cluster state through 29 kilometers of partially deployed optical fiber, circumventing limitations inherent in multi-photon encoding schemes. This approach avoids the exponential scaling of optical loss with photon number, a critical barrier to long-distance quantum communication, by encoding multiple qubits onto a single photon. The work demonstrates a viable path toward distributing complex quantum resources for future telecommunication networks reliant on entanglement and superposition.
Article Intelligence
Topics
Sponsored
AdNewsLayer Premium
Unlock deeper intelligence.
Ad-free reading, exclusive research, and real-time onchain insights.
Go Premium
