Finite-key security analysis of quantum key distribution with imperfect light sources
arXiv:1504.08151 · doi:10.1088/1367-2630/17/9/093011
Abstract
In recent years, the gap between theory and practice in quantum key distribution (QKD) has been significantly narrowed, particularly for QKD systems with arbitrarily awed optical receivers. The status for QKD systems with imperfect light sources is however less satisfactory, in the sense that the resulting secure key rates are often overly-dependent on the quality of state preparation. This is especially the case when the channel loss is high. Very recently, to overcome this limitation, Tamaki et al proposed a QKD protocol based on the so-called rejected data analysis, and showed that its security|in the limit of infinitely long keys|is almost independent of any encoding flaw in the qubit space, being this protocol compatible with the decoy state method. Here, as a step towards practical QKD, we show that a similar conclusion is reached in the finite-key regime, even when the intensity of the light source is unstable. More concretely, we derive security bounds for a wide class of realistic light sources and show that the bounds are also efficient in the presence of high channel loss. Our results strongly suggest the feasibility of long distance provably-secure communication with imperfect light sources.
27 pages, 7 figures
References in corpus (13)
- Secure Quantum Key Distribution
- Hacking commercial quantum cryptography systems by tailored bright illumination
- Provably Secure and Practical Quantum Key Distribution over 307 km of Optical Fibre
- Quantum Eavesdropping without Interception: An Attack Exploiting the Dead Time of Single Photon Detectors
- Statistical fluctuation analysis for measurement-device-independent quantum key distribution
- Composability in quantum cryptography
- Quantum key distribution with an unknown and untrusted source
- General theory of decoy-state quantum cryptography with source errors
- Discrete-phase-randomized coherent state source and its application in quantum key distribution
- Continuous-variable quantum cryptography with an untrusted relay: Detailed security analysis of the symmetric configuration
- Random Variation of Detector Efficiency: A Countermeasure against Detector Blinding Attacks for Quantum Key Distribution
- Experimental quantum key distribution with an untrusted source
- Measurement-device-independent quantum key distribution for Scarani-Acin-Ribordy-Gisin 04 protocol
Cited by in corpus (34)
- Practical challenges in quantum key distribution
- Secure quantum key distribution over 421 km of optical fiber
- Metropolitan quantum key distribution with silicon photonics
- Simple 2.5 GHz time-bin quantum key distribution
- Experimental measurement-device-independent type quantum key distribution with flawed and correlated sources
- Laser seeding attack in quantum key distribution
- Experimental Measurement-Device-Independent Quantum Key Distribution with Imperfect Sources
- Performance and security of 5 GHz repetition rate polarization-based Quantum Key Distribution
- Tight finite-key security for twin-field quantum key distribution
- Numerical Calculations of Finite Key Rate for General Quantum Key Distribution Protocols
- Finite-key security analysis for quantum key distribution with leaky sources
- Measurement-Device-Independent Quantum Key Distribution with Leaky Sources
- Continuous-variable quantum key distribution with a leakage from state preparation
- Quantum key distribution with setting-choice-independently correlated light sources
- Robustness of round-robin differential-phase-shift quantum-key-distribution protocol against source flaws
- Preparing a commercial quantum key distribution system for certification against implementation loopholes
- Security of quantum key distribution with non-I.I.D. light sources
- Characterisation of state-preparation uncertainty in quantum key distribution
- Finite-key security analysis of differential-phase-shift quantum key distribution
- Critical side channel effects in random bit generation with multiple semiconductor lasers in a polarization-based quantum key distribution system
- Experimental decoy state BB84 quantum key distribution through a turbulent channel
- Characterizing multi-photon quantum interference with practical light sources and threshold single-photon detectors
- Security of the decoy-state BB84 protocol with imperfect state preparation
- Finite-key analysis of loss-tolerant quantum key distribution based on random sampling theory
- Security of quantum key distribution with iterative sifting
- Sending or not sending twin-field quantum key distribution with distinguishable decoy states
- How Secure Are Two-Way Ping-Pong and LM05 QKD Protocols under a Man-in-the-Middle Attack?
- Optical transmitter for time-bin encoding Quantum Key Distribution
- Finite-key analysis for quantum key distribution with weak coherent pulses based on Bernoulli sampling
- Simple and Rigorous Proof Method for the Security of Practical Quantum Key Distribution in the Single-Qubit Regime Using Mismatched Basis Measurements
- Mitigating the source-side channel vulnerability by characterization of photon statistics
- Security proofs for practical QKD: variations, techniques, gaps, and limitations
- Finite-key analysis for a practical decoy-state twin-field quantum key distribution
- Security loophole in error verification in quantum key distribution