Quantum Field Gravity: A Unified Framework from Quantum DelocalizationThis paper proposes Quantum Field Gravity (QFG), a conceptual framework in which the delocalized nature of quantum states carries a real gravitational consequence. The theory suggests that gravity is influenced by the probability space of quantum systems, with effects becoming significant in regimes of high mechanical disorder or relativistic delocalization.QFG offers a single, minimal mechanism (without new particles or forces) to explain a wide range of phenomena currently addressed through separate patches in standard cosmology and astrophysics. These include galactic rotation curves, accelerated cosmic expansion, stability of small and primordial black holes, long-distance coherence of gamma-ray burst jets, stellar stability, the black hole information paradox, and relativistic gravitational effects.The paper presents the core conceptual idea, proposed mathematical forms (including a fourth-order formulation), implications for mass estimates, conservation laws, and a broad set of physical insights. An appendix outlines additional implications for future development. Advanced and more speculative applications (such as z-axis dynamics and technological possibilities) are separated into a dedicated future work section.This work is intended as a foundational conceptual paper. The mathematical development and quantitative predictions are left for future research and collaboration.
Charles Bruce Cook (Mon,) studied this question.
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