Coherent phase transfer for real-world twin-field quantum key distribution
arXiv:2012.15199 · doi:10.1038/s41467-021-27808-1
Abstract
Quantum mechanics allows the distribution of intrinsically secure encryption keys by optical means. Twin-field quantum key distribution is the most promising technique for its implementation on long-distance fibers, but requires stabilizing the optical length of the communication channels between parties. In proof-of-principle experiments based on spooled fibers, this was achieved by interleaving the quantum communication with periodical adjustment frames. In this approach, longer duty cycles for the key streaming come at the cost of a looser control of channel length, and a successful key-transfer using this technique in a real world remains a significant challenge. Using interferometry techniques derived from frequency metrology, we developed a solution for the simultaneous key streaming and channel length control, and demonstrate it on a 206 km field-deployed fiber with 65 dB loss. Our technique reduces the quantum-bit-error-rate contributed by channel length variations to <1%, representing an effective solution for real-world quantum communications.
References in corpus (12)
- Quantum cryptography: Public key distribution and coin tossing
- Satellite-to-ground quantum key distribution
- Secure Quantum Key Distribution
- Quantum key distribution over 122 km of standard telecom fiber
- Sending-or-Not-Sending with Independent Lasers: Secure Twin-Field Quantum Key Distribution Over 509 km
- Experimental quantum key distribution beyond the repeaterless secret key capacity
- Twin-Field Quantum Key Distribution over 511 km Optical Fiber Linking two Distant Metropolitans
- Surpassing the rate-transmittance linear bound of quantum key distribution
- Ultra fast quantum key distribution over a 97 km installed telecom fiber with wavelength-division multiplexing clock synchronization
- Towards satellite-based quantum-secure time transfer
- Tight finite-key security for twin-field quantum key distribution
- Frequency Ratio Measurements with 18-digit Accuracy Using a Network of Optical Clocks
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- Experimental Quantum Communication Overcomes the Rate-loss Limit without Global Phase Tracking
- Twin-field quantum key distribution without optical frequency dissemination
- Experimental quantum secret sharing based on phase encoding of coherent states
- Ultra-stable Free-Space Laser Links for a Global Network of Optical Atomic Clocks
- Twin-field quantum key distribution without phase locking
- 1002 km Twin-Field Quantum Key Distribution with Finite-Key Analysis
- Advantages of Asynchronous Measurement-Device-Independent Quantum Key Distribution in Intercity Networks
- Mode-pairing quantum key distribution with advantage distillation
- Scalable High-Rate Twin-Field Quantum Key Distribution Networks without Constraint of Probability and Intensity
- Overcoming fundamental bounds on quantum conference key agreement
- Security Proof for Variable-Length Quantum Key Distribution
- Robust twin-field quantum key distribution through sending-or-not-sending
- Phase Noise in Real-World Twin-Field Quantum Key Distribution
- Embedded digital phase noise analyzer for optical frequency metrology
- The European Satellite-Based QKD System EAGLE-1
- Twin-field quantum key distribution with partial phase postselection
- Quantum communications feasibility tests over a UK-Ireland 224-km undersea link
- Experimental Test of Nonlocality Limits from Relativistic Independence
- Continuous-variable quantum digital signatures that can withstand coherent attacks
- Towards heralded distribution of polarization entanglement
- Entanglement Model for Mode-Pairing Quantum Key Distribution
- Sending-or-not-sending quantum key distribution with phase postselection
- Efficient Light Propagation Algorithm using Quantum Computers
- Optical transmitter for time-bin encoding Quantum Key Distribution
- Phase stochastic resonance in coherent QKD signal transmission with a crosstalk noise in multicore fiber
- Phase noise characterisation of a 2-km Hollow-Core Nested Antiresonant Nodeless Fibre for Twin-Field Quantum Key Distribution
- Space-division multiplexed phase compensation for quantum communication: concept and field demonstration
- Surpassing the loss-noise robustness trade-off in quantum key distribution
- Reference-Beam Attacks against Twin-Field Quantum Key Distribution using Optical Injection Locking
- Sub-femtosecond stabilization of multicore fiber for high-fidelity quantum networking at 100% duty cycle
- International Optical Clock Comparison Using the European Optical Fiber Network
- From ultra-noisy to ultra-stable: optimization of the optoelectronic laser lock
- The QTF-Backbone: Proposal for a Nationwide Optical Fibre Backbone in Germany for Quantum Technology and Time and Frequency Metrology
- Experimental cheat-sensitive quantum weak coin flipping