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August 18, 20250 citations

Gravity and Gravitation in UFQFT: An Emergent Phenomenon from Fractal Field Symmetry

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HSHacı Soğukpınar

Key Points

  • Gravity emerges from fractal symmetry, eliminating the need for gravitons, and unifies interactions like electromagnetism and nuclear forces.
  • The theory produces measurable deviations from General Relativity, including changes in gravitational wave propagation and cosmic background radiation signatures.
  • Unified Fractal Quantum Field Theory provides a geometrically complete model for explaining phenomena without dark matter, relying on fractal corrections.
  • This framework tackles the quantum gravity problem and predicts novel variations in fundamental constants, emphasizing its significance for future experiments.

Abstract

The Unified Fractal Quantum Field Theory (UFQFT) presents a mediator-free framework in which all fundamental interactions—electromagnetism, strong and weak nuclear forces, and gravitation—emerge from the fractal phase transitions of two coupled root fields: ​ (energy) and (charge). In this formulation, the apparent diversity of forces is reinterpreted as distinct symmetry-breaking patterns of a single fractal field structure, governed by local variations in the effective spacetime dimension D. Gravity arises as an emergent phenomenon from the preservation of fractal symmetry, replacing the need for gravitons with curvature effects induced by ​ field deformations. This approach naturally explains quark confinement without gluons, reproduces Maxwell’s equations with fractal corrections, and accounts for cosmic acceleration and galactic rotation curves without invoking dark matter or dark energy particles. The theory predicts measurable deviations from General Relativity, including frequency-dependent gravitational wave propagation, CMB fractal signatures, and minute variations in fundamental constants, providing a clear experimental pathway for validation. UFQFT offers a unified, geometrically complete description of all interactions, resolving the quantum gravity problem and eliminating the need for any force-mediating particles.

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Cite This Study

Hacı Soğukpınar (2025) studied this question.

synapsesocial.com/papers/68af4314ad7bf08b1ead1723https://doi.org/10.31224/5121
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