Discrete-phase-randomized mode-pairing quantum key distribution
arXiv:2605.14484 · doi:10.1002/qute.70287
Abstract
Mode-pairing quantum key distribution (MP-QKD) protocol achieves performance beyond the repeaterless rate-transmittance bound and exhibits excellent practicality by avoiding the requirement for difficult global phase locking. However, the source side of MP-QKD still relies on the assumption of continuous phase randomization, an experimentally infeasible requirement in practice. Therefore, the practical security of the protocol cannot be fully guaranteed. In this work, we propose a discrete-phase-randomized mode-pairing quantum key distribution (DPR-MP-QKD) protocol and analyze the basis-dependence of the source side. Then, we introduce a concrete discrete version of the decoy state method that ensures the security of the DPR-MP-QKD protocol. Finally, simulation results indicate that as the number of discrete phases increases, the key rate performance of DPR-MP-QKD progressively approaches that of the continuous case, with convergence achieved at approximately 14 discrete phases. Moreover, our approach drastically lowers the demand for randomness. While conventional continuous phase randomization demands an unlimited supply of random bits, we show that merely a few bits (e.g., 4) are adequate.
13 pages, 3 figures
References in corpus (29)
- Quantum cryptography: Public key distribution and coin tossing
- Simple Proof of Security of the BB84 Quantum Key Distribution Protocol
- Decoy State Quantum Key Distribution
- Measurement-device-independent quantum key distribution
- Advances in Quantum Cryptography
- Secure quantum key distribution with realistic devices
- General Benchmarks for Quantum Repeaters
- Fundamental Limits of Repeaterless Quantum Communications
- Overcoming the rate-distance barrier of quantum key distribution without using quantum repeaters
- Hacking commercial quantum cryptography systems by tailored bright illumination
- All photonic quantum repeaters
- Fundamental rate-loss tradeoff for optical quantum key distribution
- Experimental measurement-device-independent quantum key distribution
- Sending or not sending: twin-field quantum key distribution with large misalignment error
- Experimental Demonstration of Polarization Encoding Measurement-Device-Independent Quantum Key Distribution
- Proof-of-principle demonstration of measurement-device-independent quantum key distribution using polarization qubits
- Measurement-device-independent quantum key distribution over untrustful metropolitan network
- Alternative schemes for measurement-device-independent quantum key distribution
- Phase-Matching Quantum Key Distribution
- Quantum key distribution surpassing the repeaterless rate-transmittance bound without global phase locking
- Phase encoding schemes for measurement device independent quantum key distribution and basis-dependent flaw
- Simple security analysis of phase-matching measurement-device-independent quantum key distribution
- Source attack of decoy-state quantum key distribution using phase information
- Experimental mode-pairing measurement-device-independent quantum key distribution without global phase-locking
- Discrete-phase-randomized coherent state source and its application in quantum key distribution
- Gigahertz measurement-device-independent quantum key distribution using directly modulated lasers
- Partially random phase attack to the practical two-way quantum-key-distribution system
- Asymmetric mode-pairing quantum key distribution
- Discrete-phase-randomized measurement-device-independent quantum key distribution