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February 27, 20260 citationsOpen Access

Causal Accessibility as a Unified Geometric Origin for Relativistic Limits and Galactic Dynamics

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VAVolkan Arıkan

Key Points

  • The central aim is to present a geometric framework that explains relativistic limits and galactic dynamics through causal accessibility.
  • Introduced the concept of causal accessibility as a framework for understanding galactic dynamics and relativistic limits.
  • Derived the Baryonic Tully-Fisher Relation from first principles without ad-hoc parameters.
  • Utilized Observational Resolution Modulation to account for empirical observations in the SPARC dataset.
  • Identified that the fundamental acceleration scale emerges from geometric and thermodynamic constraints instead of being an arbitrary parameter.
  • Provided a new interpretation of galactic anomalies as constraints of causal network connectivity, rather than needing dark matter.

Abstract

This preprint introduces the geometric framework of "Causal Accessibility" (D) as a unified origin for both classical relativistic limits (the light-speed barrier, event horizons) and galactic-scale kinematics. By treating these phenomena as regime-dependent manifestations of outward causal reach, we provide a parameter-free, first-principles derivation of the Baryonic Tully-Fisher Relation (BTFR). Crucially, the fundamental acceleration scale (a₀) is not inserted as an ad-hoc free parameter; rather, it emerges naturally from the geometric and thermodynamic constraints of the de Sitter horizon. Furthermore, through the mechanism of Observational Resolution Modulation (ORM), this framework naturally accounts for the External Field Effect (EFE) as empirically identified in the SPARC dataset via a falsifiable "causal screening" effect. Unlike traditional dark matter models or standard modified gravity theories, our approach does not modify the Einstein field equations or introduce new stress-energy components. Instead, it reinterprets galactic anomalies as inherent constraints of causal network connectivity. By eliminating the need for hypothetical dark matter halos or arbitrary curve-fitting parameters, this framework offers a streamlined, ontological reassessment of spacetime geometry and galactic dynamics. Note: This preprint is currently under peer-review at Classical and Quantum Gravity (CQG).

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Cite This Study

Volkan Arıkan (2026) studied this question.

synapsesocial.com/papers/69a135b0ed1d949a99abfd70https://doi.org/10.5281/zenodo.18776814
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