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An Automated Analysis of the Security of Quantum Key Distribution

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arxiv cs/0502048 v1 pith:XR45LICK submitted 2005-02-09 cs.CR quant-ph

classification cs.CRquant-ph
keywords quantumapproachbb84distributioneavesdropperexponentiallymodel-checkingnumber
verification ladder T0 review T1 audit T2 compute T3 formal
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This paper discusses the use of computer-aided verification as a practical means for analysing quantum information systems; specifically, the BB84 protocol for quantum key distribution is examined using this method. This protocol has been shown to be unconditionally secure against all attacks in an information-theoretic setting, but the relevant security proof requires a thorough understanding of the formalism of quantum mechanics and is not easily adaptable to practical scenarios. Our approach is based on probabilistic model-checking; we have used the PRISM model-checker to show that, as the number of qubits transmitted in BB84 is increased, the equivocation of the eavesdropper with respect to the channel decreases exponentially. We have also shown that the probability of detecting the presence of an eavesdropper increases exponentially with the number of qubits. The results presented here are a testament to the effectiveness of the model-checking approach for systems where analytical solutions may not be possible or plausible.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Beyond the Quantum Promise: A Security Analysis of Classical Control in Quantum Key Distribution

    quant-ph 2026-08 reject novelty 5.0 of 10

    Symbolic Tamarin models of standards-grounded QKD protocols reveal three control-plane vulnerabilities and confirm two countermeasures.

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