Pilot-reference-free continuous-variable quantum key distribution with efficient decoy-state analysis
arXiv:2309.03789 · doi:10.1364/PRJ.546543
Abstract
Continuous-variable quantum key distribution (CV QKD) using optical coherent detectors is practically favorable due to its low implementation cost, flexibility of wavelength division multiplexing, and compatibility with standard coherent communication technologies. However, the security analysis and parameter estimation of CV QKD are complicated due to the infinite-dimensional latent Hilbert space. Also, the transmission of strong reference pulses undermines the security and complicates the experiments. In this work, we tackle these two problems by presenting a time-bin-encoding CV protocol with a simple phase-error-based security analysis valid under general coherent attacks. With the key encoded into the relative intensity between two optical modes, the need for global references is removed. Furthermore, phase randomization can be introduced to decouple the security analysis of different photon-number components. We can hence tag the photon number for each round, effectively estimate the associated privacy using a carefully designed coherent-detection method, and independently extract encryption keys from each component. Simulations manifest that the protocol using multi-photon components increases the key rate by two orders of magnitude compared to the one using only the single-photon component. Meanwhile, the protocol with four-intensity decoy analysis is sufficient to yield tight parameter estimation with a short-distance key-rate performance comparable to the best Bennett-Brassard-1984 implementation.
34 pages, 8 figures, 7 tables. Comments are welcome
References in corpus (46)
- The Security of Practical Quantum Key Distribution
- Gaussian Quantum Information
- Decoy State Quantum Key Distribution
- Measurement-device-independent quantum key distribution
- Secure quantum key distribution with realistic devices
- Beating the PNS attack in practical quantum cryptography
- Continuous variable quantum cryptography using coherent states
- General Benchmarks for Quantum Repeaters
- Fundamental Limits of Repeaterless Quantum Communications
- Overcoming the rate-distance barrier of quantum key distribution without using quantum repeaters
- Practical Decoy State for Quantum Key Distribution
- Distillation of secret key and entanglement from quantum states
- Fundamental rate-loss tradeoff for optical quantum key distribution
- Sending or not sending: twin-field quantum key distribution with large misalignment error
- Provably-Secure and High-Rate Quantum Key Distribution with Time-Bin Qudits
- Preventing Calibration Attacks on the Local Oscillator in Continuous-Variable Quantum Key Distribution
- Fast and simple one-way Quantum Key Distribution
- High-rate quantum key distribution exceeding 110 Mb/s
- Breaking the Rate-Loss Bound of Quantum Key Distribution with Asynchronous Two-Photon Interference
- Security of continuous-variable quantum key distribution via a Gaussian de Finetti reduction
- Alternative schemes for measurement-device-independent quantum key distribution
- Local oscillator fluctuation opens a loophole for Eve in practical continuous-variable quantum-key-distribution systems
- Coexistence of continuous variable QKD with intense DWDM classical channels
- Quantum Hacking on Continuous-Variable Quantum Key Distribution System using a Wavelength Attack
- Practical issues in quantum-key-distribution post-processing
- Quantum key distribution surpassing the repeaterless rate-transmittance bound without global phase locking
- Protocol choice and parameter optimization in decoy-state measurement-device-independent quantum key distribution
- Statistical fluctuation analysis for measurement-device-independent quantum key distribution
- Feasibility of quantum key distribution through dense wavelength division multiplexing network
- Improved key rate bounds for practical decoy-state quantum key distribution systems
- Squashing Models for Optical Measurements in Quantum Communication
- An ultra-sensitive pulsed balanced homodyne detector: Application to time-domain quantum measurements
- Trusted Noise in Continuous-Variable Quantum Key Distribution: a Threat and a Defense
- High-speed Gaussian modulated continuous-variable quantum key distribution with a local local oscillator based on pilot-tone-assisted phase compensation
- Efficient time-bin encoding for practical high-dimensional quantum key distribution
- Discrete-phase-randomized coherent state source and its application in quantum key distribution
- Performance and security of 5 GHz repetition rate polarization-based Quantum Key Distribution
- Finite-size security of continuous-variable quantum key distribution with digital signal processing
- Noise analysis of simultaneous quantum key distribution and classical communication scheme using a true local oscillator
- The BB84 quantum key distribution using conjugate homodyne detection
- Discrete-variable quantum key distribution with homodyne detection
- Improved coherent one-way quantum key distribution for high-loss channels
- Reference-frame-independent design of phase-matching quantum key distribution
- Refined finite-size analysis of binary-modulation continuous-variable quantum key distribution
- Homodyne tomography and the reconstruction of quantum states of light
- Rigorous calibration method for photon-number statistics