Topological Resonance-Based Deterministic Computing Architecture: From Virtual QPU to Reversible Thermodynamic Optimization
This paper proposes a novel, stateless deterministic computing architecture that integrates Algorithmic Topological Resonance theory, a virtual 1-million-qubit processing unit, and reversible thermodynamic logic to overcome the memory wall, Shannon limits, and Landauer's thermodynamic barrier while ensuring hardware security and long-term digital permanence.
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