Nanjing University Demonstrates Asynchronous MDI Quantum Cryptographic Conferencing with O(η) Loss Scaling
quantumcomputingreport.com Sep 24, 2026

Nanjing University Demonstrates Asynchronous MDI Quantum Cryptographic Conferencing with O(η) Loss Scaling

AI-summarised brief · reviewed before publication

Nanjing University’s research team, led by Professor Xiao‑Song Ma, experimentally demonstrated an Asynchronous Measurement‑Device‑Independent Quantum Cryptographic Conferencing (AMDI QCC) network connecting three independent user nodes. Published in Physical Review Letters, the protocol eliminates the need for global phase locking and transforms key‑rate scaling from O(ηⁿ) to O(η), making loss tolerance independent of participant number. The system achieved a maximum total loss of 59.6 dB, delivering a secure key rate of 4.470 × 10⁻⁹ bits per pulse—an improvement of over 38 dB compared to earlier polarization‑encoded MDI setups.

💡 Why It Matters

  • · By decoupling photon detection events, the AMDI QCC protocol removes a critical scalability barrier, enabling practical multi‑party quantum networks over long distances without complex laser synchronization.