Publication | Open Access
Composable security analysis of continuous-variable measurement-device-independent quantum key distribution with squeezed states for coherent attacks
39
Citations
63
References
2018
Year
EngineeringComposable Security AnalysisHardware SecurityQuantum ComputingQuantum EntanglementCoherent AttacksSqueezed StatesQuantum Key DistributionQuantum ScienceQuantum CryptographyQuantum SecurityPhysicsReverse ReconciliationSecurity AnalysisQuantum InformationCryptographyConditional Smooth Min-entropyNatural SciencesQuantum CommunicationQuantum NetworkingQuantum Error Correction
Measurement-device-independent quantum key distribution protocol, whose security analysis does not rely on any assumption on the detection system, can immune the attacking against detectors. We give a first composable security analysis for continuous-variable measurement-device-independent quantum key distribution using squeezed states against general coherent attacks. The security analysis is derived based on the entanglement-based scheme considering finite-size effect. A version of entropic uncertainty relation is exploited to give a lower bound on the conditional smooth min-entropy by trusting Alice's and Bob's devices. The simulation results indicate that, in the universal composable security framework, the protocol can tolerate 2.5 dB and 6.5 dB channel loss against coherent attacks with direct and reverse reconciliation, respectively.
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