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UFT-ID 2.0 Dataset: A Unified Field Theory of Information Dynamics Built on Loop-Quantized Geometry

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Zenodo2026-02-18 更新2026-05-26 收录
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his dataset presents the full multimodal research package for UFT-ID 2.0, a unified theoretical framework that grounds information, geometry, and gravity in a shared microscopic ontology. Building on the limitations of UFT-ID 1.x—which treated gravity as an assumed entropic force without specifying the microstructure of spacetime—UFT-ID 2.0 introduces a dual-layer architecture consisting of: A discrete geometric substrate defined by Loop Quantum Gravity (LQG), where spacetime is encoded by SU(2) spin networks with quantized area and volume spectra. An SU(3) information field (Φ) defined directly on the spin-network vertices, implemented through local qutrit Hilbert spaces that support ternary logical states. These layers are combined into a single coupled Hilbert spaceH = H_LQG ⊗ H_Φ,and their interaction is governed by an effective action that includes geometric dynamics, information-field dynamics, and back-reaction terms. This formalism yields conserved meaning currents and establishes a rigorous mechanism through which gravity emerges as a thermodynamic consequence of underlying information-geometric microstates, rather than being postulated. The dataset includes: The full UFT-ID 2.0 white paper Visual/diagrammatic summary of the framework MP4 explainer video DOCX manuscript version Audio narration Additional supporting figures illustrating spin networks, SU(3) qutrit fields, emergent gravitational curvature, and information-geometric interactions UFT-ID 2.0 provides a unified structure capable of describing: Planck-scale quantum geometry Classical gravitational thermodynamics Cognitive and AI system dynamics mapped onto fixed effective geometries This research object serves as a comprehensive foundation for future work in quantum information geometry, emergent gravity, and unified models of physical and cognitive systems.

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Zenodo
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2025-11-30
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