Extension: Quantum-Secure Blockchain and Decentralized Systems
Quantum computing creates a two-sided problem for blockchain cryptography. Quantum-Secure Blockchain and Decentralized Systems evaluates lattice-based, multivariate, and hash-based signatures, then reports simulation-based robustness against quantum-enabled attacks while preserving decentralization, transparency, and immutability. Those results extend Kaal's claim that blockchain security depends on quantum-resistant algorithms. The available evidence is limited to the abstract. Because the source is posted preprint content, it cannot independently establish production readiness or the claimed efficiency benefits of quantum computing.
Affirmed commentary position. This record extends a source-bound scholarly claim but is not a verbatim paper claim.
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Evidence and mapping
Topics
consensus-and-securitycitation-and-knowledgeblockchainscholarly-literaturecrossrefevidence-provenance
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