General immunity and superadditivity of two-way Gaussian quantum cryptography
arXiv:1603.01270 · doi:10.1038/srep22225
Abstract
We consider two-way continuous-variable quantum key distribution, studying its security against general eavesdropping strategies. Assuming the asymptotic limit of many signals exchanged, we prove that two-way Gaussian protocols are immune to coherent attacks. More precisely we show the general superadditivity of the two-way security thresholds, which are proven to be higher than the corresponding one-way counterparts in all cases. We perform the security analysis first reducing the general eavesdropping to a two-mode coherent Gaussian attack, and then showing that the superadditivity is achieved by exploiting the random on/off switching of the two-way quantum communication. This allows the parties to choose the appropriate communication instances to prepare the key, accordingly to the tomography of the quantum channel. The random opening and closing of the circuit represents, in fact, an additional degree of freedom allowing the parties to convert, a posteriori, the two-mode correlations of the eavesdropping into noise. The eavesdropper is assumed to have no access to the on/off switching and, indeed, cannot adapt her attack. We explicitly prove that this mechanism enhances the security performance, no matter if the eavesdropper performs collective or coherent attacks.
6+6 pages, 4 figures
References in corpus (10)
- Free-Space distribution of entanglement and single photons over 144 km
- Provably Secure and Practical Quantum Key Distribution over 307 km of Optical Fibre
- A de Finetti representation theorem for infinite dimensional quantum systems and applications to quantum cryptography
- Proposal for Implementing Device-Independent Quantum Key Distribution based on a Heralded Qubit Amplification
- Continuous Variable Quantum Cryptography using Two-Way Quantum Communication
- Multidimensional reconciliation for continuous-variable quantum key distribution
- Characterization of Collective Gaussian Attacks and Security of Coherent-State Quantum Cryptography
- Continuous-variable quantum key distribution protocols over noisy channels
- Correlation Matrices of Two-Mode Bosonic Systems
- Continuous-variable quantum cryptography with an untrusted relay: Detailed security analysis of the symmetric configuration
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