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November 17, 20250 citationsOpen Access

Expansional Field Theory: Structural Derivation of the Universal Acceleration from First Principles

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MMMoreno, Manuel

Key Points

  • Universal acceleration defined geometrically, linking cosmological expansion to weak-gravity dynamics.
  • The geometric model predicts accelerative quantities with no free parameters, supporting parameterless theories.
  • Cosmological acceleration calculated as a_ϕ^cosm = c/(2π t_0), aligning with observed low-acceleration regimes.
  • Structural hierarchy established with (a_ϕ^cosm)/(a_ϕ^loc) = √3, pointing to cosmological implications.

Abstract

Abstract We show that the Expansional Field Theory (EFT), a geometric model in which the universe is represented as a discretized cubic substrate whose expansion defines all effective physical scales, predicts the existence of two universal acceleration quantities with no free parameters. The global acceleration a_ϕᶜosm arises from the fundamental oscillatory mode associated with the cosmological timescale t₀, givinga_ϕᶜosm = c/ (2π t₀). In the presence of condensed matter, the expansion of the substrate is attenuated, defining an effective local rate λₑf. The associated local acceleration a_ϕˡoc follows from the cubic symmetry of the substrate, yieldinga_ϕˡoc = (a_ϕᶜosm) /√3. These two quantities form an exact structural hierarchy (a_ϕᶜosm) / (a_ϕˡoc) = √3, established solely by the geometry of the substrate, without empirical interpolation functions or additional parameters. The predicted values, a_ϕᶜosm ≈ 1. 1×10^ (-10) m/s², a_ϕˡoc ≈ 6. 3×10^ (-11) m/s², lie within the observed low-acceleration regime of gravitational systems. EFT thus provides a geometric origin for the universal acceleration scale and a testable prediction for a minimum local acceleration, offering a new structural link between cosmological expansion and dynamics in weak-gravity environments.

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Cite This Study

Moreno, Manuel (2025) studied this question.

synapsesocial.com/papers/692509f6c0ce034ddc352e15https://doi.org/10.5281/zenodo.17634740
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