Rigorous security proofs for variable-length QKD, phase-error bounding with imperfect detectors, marginal-constrained entropy accumulation, and authentication reductions place practical QKD on firmer mathematical ground.
Practical decoy state for quantum key distribution.Physical Review A, 72(1), July 2005
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Performance evaluation of three QKD protocols in non-turbulent underwater channels via analytical QBER derivation for BBM92 and Monte Carlo validation across water types.
citing papers explorer
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Rigorous Security Proofs for Practical Quantum Key Distribution
Rigorous security proofs for variable-length QKD, phase-error bounding with imperfect detectors, marginal-constrained entropy accumulation, and authentication reductions place practical QKD on firmer mathematical ground.
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Performance Analysis of Underwater Quantum Key Distribution Protocols: BB84, SARG04, and BBM92
Performance evaluation of three QKD protocols in non-turbulent underwater channels via analytical QBER derivation for BBM92 and Monte Carlo validation across water types.