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April 15, 20260 citationsOpen Access

Einstein–Karahan Framework v122: A Geometric Torsion–Phase Model with First Real-Data Validation from the SPARC Database

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AKAsil Karahan

Key Points

  • This work aims to validate the Einstein–Karahan framework using real data from the SPARC database.
  • Developed a geometric model incorporating torsion-phase fields as an alternative to dark matter.
  • Applied the framework to the galaxy NGC 3198 using observational data from SPARC.
  • Performed a quantitative fit to assess model accuracy regarding astrophysical rotation curves.
  • The model successfully reproduces the qualitative behavior of flat rotation curves.
  • Noted limitations include parameter degeneracy and non-optimal goodness-of-fit.
  • Indicates the framework is mathematically consistent but still a proof-of-concept for dark matter alternatives.

Abstract

We present version v122 of the Einstein–Karahan framework, a geometric extension of spacetime dynamics that incorporates an effective torsion–phase field system as an alternative to particle-based dark matter. In this formulation, galactic rotation curves are interpreted as emergent effects of an induced acceleration associated with a logarithmic torsion profile, rather than as evidence for unseen mass components.This work consolidates the theoretical structure of the framework—including its effective field equations, covariant embedding within a Riemann–Cartan geometry, and stability and local-consistency conditions—with a first direct application to real observational data from the SPARC database. A quantitative fit is performed for the galaxy NGC 3198, demonstrating that the model can be consistently confronted with astrophysical rotation curve data.The resulting parameters reproduce the qualitative behavior of flat rotation curves, while also revealing limitations such as parameter degeneracy and a non-optimal goodness-of-fit. These findings indicate that, although the framework is mathematically consistent and empirically testable at the effective level, it remains a proof-of-concept rather than a fully validated alternative to dark matter.Future work will focus on systematic multi-galaxy analysis, statistical parameter inference, and consistency checks across gravitational regimes. The Einstein–Karahan framework thus defines a structured and falsifiable research program aimed at reinterpreting galactic dynamics as emergent properties of extended spacetime geometry.

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Cite This Study

Asil Karahan (2026) studied this question.

synapsesocial.com/papers/69df2b2ce4eeef8a2a6b01f0https://doi.org/10.5281/zenodo.19551668
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