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We propose the Photonic Collapsar Director (PCD), a novel computational architecture that integrates photonic neural processing with hierarchical memory management. The architecture comprises a network of optical waveguides with phase-sensitive dynamics, where information is encoded in the amplitude and phase of optical signals. A key innovation is the triad coherence mechanism—a phase-locking condition among a designated subset of nodes that triggers a global state transition, resulting in a coherent amplification of the network state. The system is organized into six hierarchical memory levels (Raw to Filtered to Important to Vital to Meta to Conscious), enabling autonomous reorganization, abstraction, and forgetting of stored information. We derive theoretical bounds on energy consumption (O(N) per operation) and processing latency (O(1) in the optical domain), and discuss potential implementations on existing photonic hardware platforms including Lightmatter Envise and iPronics programmable photonic chips. The architecture is presented at the conceptual level with rigorous mathematical formulation, emphasizing the theoretical framework rather than implementation details.
Тишков В. В. 2026. Photonic Collapsar Director: A Quantum-Optical Architecture for Hierarchical Memory and Coherent State Processing. PREPRINTS.RU. https://doi.org/10.24108/preprints-3116225