Quantum keys can fail quietly. Loss and noise can leave you with bits, but no secrecy. We model the cliff to expose silent breakage before it becomes a system risk.
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Updated
Jul 26, 2026 - Python
Quantum keys can fail quietly. Loss and noise can leave you with bits, but no secrecy. We model the cliff to expose silent breakage before it becomes a system risk.
Quantum dense coding protocols using different entangled states are comparatively analyzed under ideal and Pauli noisy environments. Theoretical and Qiskit simulation results show excellent agreement, revealing trade-offs in robustness, circuit depth, and gate complexity, providing a practical framework for future quantum communication networks.
Тезисы и резюме R&D проекта по реализации протокола квантового распределения ключей BB84 (Qiskit).
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