Phase-correlation-free quantum key distribution source operating at gigahertz rates
arXiv:2606.04947 · doi:10.1063/5.0347954
Abstract
Phase randomization is essential for the security of practical decoy-state quantum key distribution (QKD) systems. Commonly, implementations rely on laser sources which are either actively phase-randomized, or gain-switched. However, at high repetition rates these show correlations, which can ultimately compromise security and performance. We present a 1.25 GHz phase-randomized QKD source based on a super-luminescent light emitting diode (SLED) operating in the C-band as a compact and cost-effective alternative. The source generates ps optical pulses with ps pulse-to-pulse separation, compatible with high-speed time-bin encoding. Interferometric measurements demonstrate visibility between adjacent time bins, confirming strong first-order coherence within the same quantum signals, while the spontaneous-emission-driven nature of the SLED ensures intrinsic global phase randomization between adjacent signals. This work establishes a scalable SLED-based platform for high-speed prepare-and-measure QKD systems.
11 pages (7 pages main text and 4 pages Supplementary), 10 figures (5 in main text and 5 in supplementary), Poster accepted in Qcrypt 2026
References in corpus (34)
- The Security of Practical Quantum Key Distribution
- Decoy State Quantum Key Distribution
- Advances in Quantum Cryptography
- Satellite-to-ground quantum key distribution
- Secure quantum key distribution with realistic devices
- Beating the PNS attack in practical quantum cryptography
- Secure Quantum Key Distribution
- Overcoming the rate-distance barrier of quantum key distribution without using quantum repeaters
- Practical Decoy State for Quantum Key Distribution
- Quantum repeaters: From quantum networks to the quantum internet
- Concise Security Bounds for Practical Decoy-State Quantum Key Distribution
- High-rate quantum key distribution exceeding 110 Mb/s
- Loss-tolerant quantum cryptography with imperfect sources
- Fast Single Photon Detectors and real-time Key Distillation: Enabling High Secret Key Rate QKD Systems
- Finite-key analysis on the 1-decoy state QKD protocol
- Simple 2.5 GHz time-bin quantum key distribution
- Quantum key distribution with correlated sources
- Performance and security of 5 GHz repetition rate polarization-based Quantum Key Distribution
- Fully-Passive Quantum Key Distribution
- Evaluation of the phase randomness of the light source in quantum key distribution systems with an attenuated laser
- Security of quantum key distribution with intensity correlations
- A Critical Analysis of Deployed Use Cases for Quantum Key Distribution and Comparison with Post-Quantum Cryptography
- Security of quantum key distribution with imperfect phase randomisation
- Preparing a commercial quantum key distribution system for certification against implementation loopholes
- A fully passive transmitter for decoy-state quantum key distribution
- Enhanced Detection Rate and High Photon-Number Efficiencies with a Scalable Parallel SNSPD
- Testing the photon-number statistics of a quantum key distribution light source
- Security bounds for decoy-state QKD with arbitrary photon-number statistics
- Quantum networks using rare-earth ions
- Quantum key distribution with imperfectly isolated devices
- Quantum key distribution with unbounded pulse correlations
- Intensity correlations in decoy-state BB84 quantum key distribution systems
- Characterising higher-order phase correlations in gain-switched laser sources with application to quantum key distribution
- Incorporating device characterization into security proofs