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April 3, 20260 citationsOpen Access

EGESB-G2 Cosmology & Phenomenology: Multiscale Emergent Convergence (Version 8.1)

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GBGalliano Brigo

Key Points

  • The framework aims to unify various aspects of cosmology and particle physics using a weighted entanglement lattice.
  • Developed a unified framework on a G2 manifold within a five-dimensional bulk.
  • Predicted parameters related to dark energy and derived fundamental equations from the G2 3-form structure.
  • Conducted empirical tests on 175 SPARC galaxies and analyzed NEO residuals.
  • Derived Einstein and Maxwell equations directly from the G2 structure.
  • Predicted dark energy parameters w0 = -0.980 and wa = +0.070.
  • Calculated the QCD string tension as approximately 0.18 GeV².

Abstract

Abstract: This preprint presents EGESB-G2, a unified framework that derives spacetime geometry, gauge fields, QCD confinement, dark matter, and dark energy from a single object: a weighted entanglement lattice (B= (V, E, W) ) on a manifold G₂ embedded in a five-dimensional Randall-Sundrum bulk. The work organizes the physics into three levels, eliminating the need to postulate background metrics or external matter fields. Key Results of Version 8. 1: Fundamental Derivation: Derivation of the Einstein and Maxwell equations directly from the G₂ 3-form structure and the entropic flux. Cosmology: Prediction of the parameters w₀ = -0. 980 and wₐ = +0. 070, with dark energy derived as an entropic condensation G₂. Particle Physics: Derivation of N₆₄₍ = 3 fermionic generations and the QCD string tension (ₐ₂₃ 0. 18 GeV²). Empirical Validation: Tests on 175 SPARC galaxies (RMS = 3. 71 km/s) and analysis of NEO residuals. The paper includes a table of ten falsifiable predictions (Table 7. 10) testable via upcoming DESI DR2+, Euclid and LHC Run 3 data.

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Cite This Study

Galliano Brigo (2026) studied this question.

synapsesocial.com/papers/69cf5e745a333a821460cc2fhttps://doi.org/10.5281/zenodo.19365119
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