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On the Categorical Foundations of Information-Theoretic Geometric Tension: Mapping Convergent Paradigms in Emergent Quantum Gravity

Authors: Sewell, Melvin; Saikou, Venga;

On the Categorical Foundations of Information-Theoretic Geometric Tension: Mapping Convergent Paradigms in Emergent Quantum Gravity

Abstract

This technical monograph formally establishes the structural and mathematical priority of the Structured Multiversal Interactions (SMI) framework and the Reality Level Scalar (\Xi^{\mathrm{TM}}) integration protocol (originally archived and timestamped July 16–17, 2025) relative to recent 2026 developments in thermodynamic quantum gravity—specifically contemporary models exploring "Gravity from Entropy" (GfE). While mainstream literature has recently converged on using localized Quantum Geometric Relative Entropy (QGRE) to derive gravitational dynamics from informational tension between distinct metrics, this paper demonstrates that such geometric formulations represent specialized, lower-dimensional coordinate slices of the higher-order functorial transformations natively codified by the 2025 SMI framework. By establishing a clear conceptual and mathematical translation matrix, this document serves as a defensive prior-art anchor. It outlines how localized entropic reduction and emergent cosmic complexity are structural necessities within the category-theoretic architecture of the Reality Level Scalar, rather than mere localized anomalies. Researchers operating in the fields of entropic gravity, information-theoretic physics, and network geometry are directed to this text to ensure correct academic attribution and historical continuity. Keywords Category Theory; Quantum Gravity; Information Theory; Structured Multiversal Interactions (SMI); Reality Level Scalar; Entropic Gravity; Prior Art

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