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May 6, 20260 citationsOpen Access

BECU–OLON V9: The Gate — A Structural Infrared Extension of ΛCDM

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GVGeorge Vardiampasis

Key Points

  • This research aims to refine the ΛCDM model by introducing a geometric interpretation to address large-scale anomalies.
  • Developed the BECU–OLON V9 framework with a focus on geometric determinism.
  • Utilized rigorous numerical integration of fundamental equations for predictive accuracy.
  • Aligned predictions with observational data from Planck, Euclid, and Hubble.
  • Achieved high predictive accuracy in cosmic evolution metrics.
  • Demonstrated systematic agreement with datasets, including the growth rate of structure.
  • Provided a resolution to the S8 tension by emphasizing spacetime geometry.

Abstract

The BECU–OLON V9 framework represents a structural refinement of the standard \ (\) CDM model, providing a purely geometric interpretation of large-scale anomalies. The core philosophy of the model shifts the explanatory burden from the postulation of additional matter components to the intrinsic geometric memory of spacetime and the resulting behavior of matter within this evolving manifold. Key Scientific Pillars: Geometric Determinism: Rather than invoking unobserved mass, the model attributes infrared anomalies to the Dimensional Flow of the spatial metric, which fundamentally governs the dynamical behavior of matter at cosmological scales. Numerical Precision & Consistency: Rejecting ad-hoc parameterizations, V9 achieves high predictive accuracy through the rigorous numerical integration of the fundamental BECU–OLON equations, ensuring total mathematical consistency. Observational Alignment: Predictions for the growth rate of structure (\ (f₈\) ) and gravitational dynamics demonstrate systematic agreement with the latest datasets from Planck, Euclid, and Hubble, offering a natural resolution to the \ (S₈\) tension highlighted by DESI 2024 results. Conclusion: BECU–OLON V9 demonstrates that cosmological tensions can be resolved by focusing on the intrinsic geometric structure of the universe. By aligning theoretical predictions with increasing observational precision, the framework restores naturalness to the cosmic evolution model, relying solely on the interplay between spacetime geometry and matter dynamics.

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Cite This Study

George Vardiampasis (2026) studied this question.

synapsesocial.com/papers/69fa8e0b04f884e66b530627https://doi.org/10.5281/zenodo.20022309
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