Publication | Open Access
Hybrid ququart-encoded quantum cryptography protected by Kochen-Specker contextuality
60
Citations
17
References
2011
Year
EngineeringQuantum PrivacyQuantum ComputingPost-quantum CryptographyQuantum ProtocolsQuantum EntanglementQuantum Key DistributionQuantum CryptographyQuantum ScienceQuantum SecurityKochen-specker ContextualityPhysicsQuantum Field TheoryQuantum InformationHybrid QuquartsQuantum Cryptographic ProtocolsCryptographyNatural SciencesQuantum CommunicationOrbital Angular Momentum
Quantum cryptographic protocols based on complementarity are not secure against attacks in which complementarity is imitated with classical resources. The Kochen-Specker (KS) theorem provides protection against these attacks, without requiring entanglement or spatially separated composite systems. We analyze the maximum tolerated noise to guarantee the security of a KS-protected cryptographic scheme against these attacks and describe a photonic realization of this scheme using hybrid ququarts defined by the polarization and orbital angular momentum of single photons.
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