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April 15, 20260 citationsOpen Access

Einstein–Karahan Framework v122: A Geometric Torsion–Phase Extension of Galactic Dynamics

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AKAsil Karahan

Key Points

  • The research aims to extend general relativity by integrating torsion and phase fields to explain galactic dynamics without dark matter.
  • Developed a geometric extension of spacetime by incorporating torsion and phase fields.
  • Analyzed galactic rotation curves and large-scale structures through induced modifications in gravitational dynamics.
  • Reduced the framework to an effective description that modifies baryonic rotation profiles.
  • Demonstrated that the framework can produce flat rotation curves without the need for dark matter halos.
  • Established a minimal formulation connecting geometric dynamics with astrophysical observations.
  • Highlighted that the theory provides a pathway to interpret dark matter as extended spacetime geometry effects.

Abstract

The Einstein–Karahan framework presents a geometric extension of spacetime dynamics by incorporating a coupled torsion–phase field system into general relativity. Instead of introducing dark matter as an additional particle component, the model interprets galactic rotation curves and large-scale structure as emergent effects of torsion-induced modifications to gravitational dynamics.In this formulation, spacetime is described by a metric-compatible geometry augmented with torsion degrees of freedom, while an additional phase field captures collective synchronization effects within the system. In the macroscopic limit, the framework reduces to an effective description in which an induced acceleration term modifies the standard baryonic rotation profile, naturally producing flat rotation curves without requiring dark matter halos.The present work provides a consistent minimal formulation that connects geometric field dynamics with astrophysical observables. While the theory remains at an effective level and requires further numerical validation and observational calibration, it establishes a testable pathway toward interpreting dark matter phenomena as manifestations of extended spacetime geometry rather than new particle species

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Cite This Study

Asil Karahan (2026) studied this question.

synapsesocial.com/papers/69df2b2ce4eeef8a2a6b01f3https://doi.org/10.5281/zenodo.19548595
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