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May 4, 20260 citationsOpen Access

BECU-OLON V7: The 1d-Axis and the 20% Resultant Vector — The Geometric Termination of Dark Matter

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GVGeorge Vardiampasis

Key Points

  • This study aims to explore a geometric approach to understanding dark matter and gravitational anomalies.
  • Geometric analysis using the BECU-OLON V7 framework
  • Numerical simulations and data analysis conducted through open-source environments
  • Mathematical modeling to examine non-isotropic trajectories
  • Identified a 20% field effect asymmetry at the 0.75 coordinate of the structural axis.
  • Observed a 10.2% suppression of the ISW/Lensing ratio at k=1.0, matching current growth datasets.
  • Introduced a hysteresis term to correlate geometric information across evolutionary phases.

Abstract

BECU-OLON V7: Geometric Analysis of the 1d-Axis and Structural Field Asymmetries. The BECU-OLON V7 framework explores a geometric interpretation of cosmological observations, suggesting that gravitational anomalies can be understood through structural density gradients. This update formalizes the concept of the 1d-Axis as a primary structural element of cosmic evolution. Key Features of the V7 Update: Resultant Field Analysis: Identification of a 20% field effect asymmetry, positioned at the 0. 75 (3/4) coordinate of the structural axis with a lateral left-offset. This mechanism is proposed as a potential explanation for observed large-scale flows. Asymmetric Flow Dynamics: A mathematical approach to non-isotropic trajectories, offering new insights into the Hubble and \ (S₈\) tensions. Cosmic Memory Integration: The inclusion of a hysteresis term (\ (₌₄₌\) ) that accounts for geometric information from preceding evolutionary phases. Observational Correlation: Numerical results indicate a 10. 2% suppression of the ISW/Lensing ratio at \ (k=1. 0\), providing a consistent fit with current structural growth datasets. By employing the fundamental eigenvalue of \ (3\), BECU-OLON V7 provides a unified geometric perspective that accounts for the dynamics typically attributed to the dark sector, without the necessity for additional non-baryonic components. Independent Research by Georgios Vardiampasis (May 2026). Numerical simulations and data analysis conducted through open-source computational environments and assisted by modern analytical methodologies.

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Cite This Study

George Vardiampasis (2026) studied this question.

synapsesocial.com/papers/69f8375e3ed186a7399818e8https://doi.org/10.5281/zenodo.19979311
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