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May 4, 20260 citationsOpen Access

BECU-OΛON V6: Stable Phase-Triggered Geometric Response in Structure Growth

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GVGeorge Vardiampasis

Key Points

  • This research aims to present a refined model for cosmic structure growth that includes a phase-triggered geometric response.
  • Introduced a phase-triggered geometric response model with a structure-dependent response function μ(k,a).
  • Performed numerical integration to assess growth rates and gravitational potential behavior.
  • Validated the model by comparing it with observational data to ensure consistency within uncertainties.
  • The growth rate fσ8(z) aligns with ΛCDM predictions, confirming the model's validity.
  • The gravitational potential shows a mild enhancement, suggesting new dynamics at play.
  • The ISW kernel demonstrates stability, indicating the model's robustness against instabilities.

Abstract

We present Version 6 of a phase-triggered geometric response model for cosmic structure growth. The framework introduces a minimal modification to the standard growth equation through a structure-dependent response function μ(k,a), controlled by a critical structural parameter K. The model preserves ΛCDM-like behavior at early times while allowing a weak, controlled deviation at late times through a smooth transition mechanism. Numerical integration shows that the growth rate fσ8(z) remains consistent with ΛCDM predictions, while the gravitational potential exhibits a mild enhancement. The ISW kernel remains stable and free of instabilities. The model is validated through comparison with observational data, demonstrating consistency within current uncertainties. This establishes a stable and minimal baseline framework for structure-dependent gravitational response without introducing additional matter components. Future work will explore stronger scale dependence and improved agreement with observational constraints.

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Cite This Study

George Vardiampasis (2026) studied this question.

synapsesocial.com/papers/69f837933ed186a739981c5bhttps://doi.org/10.5281/zenodo.19977179
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