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July 5, 20260 citationsOpen Access

The Subatomic Metric Strain: Deriving Mass Generation, Charge Conjugation, and Color Confinement from Local Spacetime Geometrodynamics, GUT

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TFTakács Ferenc

Key Points

  • The aim is to develop a geometric framework that integrates quantum field theory with general relativity through local spacetime interactions.
  • Presented a dimension-corrected space equation linking quantum phenomena and general relativity.
  • Eliminated the need for traditional particle physics constructs like the Higgs and gauge bosons.
  • Constructed a new model of interactions based solely on geometric properties of spacetime.
  • Established that baryons behave as microscopic Kerr-type black holes.
  • Demonstrated that spacetime curvature mediates interactions previously thought to require forces.
  • Initiated a shift away from statistical quantum mechanics towards a purely geometric understanding of particles.

Abstract

We present a non-perturbative, purely geometric framework that unifies quantum field phenomena with general relativity by interpreting elementary particles as localized topological stresses within the fabric of spacetime. Based on the dimension-corrected space equation R_ - (12R + 12K + C²) g_ = 8 Gc⁴ T_, we completely eliminate the need for the Higgs background, virtual gauge bosons, or independent fundamental forces, and leave spacetime (gravity) as the only interaction in the cosmos. All other previously known interactions are represented and mediated by curved, oscillating, undulating, swirling spacetime, similar to gravity. We present the mechanism of these phenomena and the real properties of baryons, which as microscopic Kerr-type black holes can even create wormholes with their partners. We break with the statistical approach of quantum mechanics, setting new, broader limits for future research. We initiate a new paradigm shift in physics.

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Cite This Study

Takács Ferenc (2026) studied this question.

synapsesocial.com/papers/6a49f60bf5d1d45b28800a2chttps://doi.org/10.5281/zenodo.21166480
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