Second-order coding rates for key distillation in quantum key distribution
arXiv:1910.03883
Abstract
The security of quantum key distribution has traditionally been analyzed in either the asymptotic or non-asymptotic regimes. In this paper, we provide a bridge between these two regimes, by determining second-order coding rates for key distillation in quantum key distribution under collective attacks. Our main result is a formula that characterizes the backoff from the known asymptotic formula for key distillation -- our formula incorporates the reliability and security of the protocol, as well as the mutual information variances to the legitimate receiver and the eavesdropper. In order to determine secure key rates against collective attacks, one should perform a joint optimization of the Holevo information and the Holevo information variance to the eavesdropper. We show how to do so by analyzing several examples, including the six-state, BB84, and continuous-variable quantum key distribution protocols (the last involving Gaussian modulation of coherent states along with heterodyne detection). The technical contributions of this paper include one-shot and second-order analyses of private communication over a compound quantum wiretap channel with fixed marginal and key distillation over a compound quantum wiretap source with fixed marginal. We also establish the second-order asymptotics of the smooth max-relative entropy of quantum states acting on a separable Hilbert space, and we derive a formula for the Holevo information variance of a Gaussian ensemble of Gaussian states.
v2: 43 pages, 3 figures, minor changes / typos fixed
References in corpus (16)
- Secure Quantum Key Distribution
- Unconditional optimality of Gaussian attacks against continuous-variable QKD
- Composable security proof for continuous-variable quantum key distribution with coherent states
- A de Finetti representation theorem for infinite dimensional quantum systems and applications to quantum cryptography
- Post-selection technique for quantum channels with applications to quantum cryptography
- One-mode Bosonic Gaussian channels: a full weak-degradability classification
- Reliable numerical key rates for quantum key distribution
- Security of Binary Modulated Continuous Variable Quantum Key Distribution under Collective Attacks
- Degradability of Bosonic Gaussian channels
- Practical Evaluation of Security for Quantum Key Distribution
- A security proof of continuous-variable QKD using three coherent states
- Cryptographic security of quantum key distribution
- Asymptotic security of discrete-modulation protocols for continuous-variable quantum key distribution
- Sine distance for quantum states
- Entanglement-assisted private communication over quantum broadcast channels
- Symmetric extension of bipartite quantum states and its use in quantum key distribution with two-way postprocessing
Cited by in corpus (5)
- On the design and analysis of near-term quantum network protocols using Markov decision processes
- Fidelity-Based Smooth Min-Relative Entropy: Properties and Applications
- Universal superposition codes: capacity regions of compound quantum broadcast channel with confidential messages
- Extendibility limits quantum-secured communication and key distillation
- Optimum ratio between two bases in Bennett-Brassard 1984 protocol with second order analysis