Continuous temporal processing in open quantum reservoirs is shown to obey a generalized Landauer bound, with predictive performance tied to resonant energy-gap matching and to quantum coherence.
Holevo, The capacity of the quantum channel with general signal states, IEEE Transactions on Information Theory44, 269 (1998)
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QRQT protects quantum teleportation's classical channel with PQC, showing quantum memory coherence as the central bottleneck that caps secure distance at 191-199 km and produces a non-monotonic joint attack probability.
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Thermodynamics of Quantum Reservoir Computing
Continuous temporal processing in open quantum reservoirs is shown to obey a generalized Landauer bound, with predictive performance tied to resonant energy-gap matching and to quantum coherence.
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Quantum-Resistant Quantum Teleportation
QRQT protects quantum teleportation's classical channel with PQC, showing quantum memory coherence as the central bottleneck that caps secure distance at 191-199 km and produces a non-monotonic joint attack probability.