Resource estimates show Shor's algorithm can break 256-bit ECDLP with fewer than 1450 logical qubits and 90 million Toffoli gates on fast-clock quantum hardware, enabling on-spend attacks on cryptocurrency mempools.
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Hybrid entangled PUFs generate an ITS initial authentication key, allowing a complete entanglement-based QKD protocol without pre-shared secrets under minimal hardware assumptions.
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Securing Elliptic Curve Cryptocurrencies against Quantum Vulnerabilities: Resource Estimates and Mitigations
Resource estimates show Shor's algorithm can break 256-bit ECDLP with fewer than 1450 logical qubits and 90 million Toffoli gates on fast-clock quantum hardware, enabling on-spend attacks on cryptocurrency mempools.
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Unconditional Authentication in Quantum Key Distribution via Hybrid Entangled Physical Unclonable Functions
Hybrid entangled PUFs generate an ITS initial authentication key, allowing a complete entanglement-based QKD protocol without pre-shared secrets under minimal hardware assumptions.