Unified Geometric Theory Based on the Constant G = 4/3 : From Galactic Dynamics to the Y(715) Resonance and Resolution of Cosmological Tensions

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Autore principale: Kryukova, Svetlana
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Pubblicazione: Zenodo 2026
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author Kryukova, Svetlana
author_facet Kryukova, Svetlana
contents <p>10.5281/zenodo.18550484</p> <p>Based on a statistical analysis of 175 spiral galaxies from the SPARC<br>catalog, we report the discovery of a fundamental dimensionless constant αG =<br>Π = 4/3 with > 8σ significance (⟨Π⟩ = 1.332 ± 0.012, p = 0.436). Interpreting<br>αG as a geometric projection coefficient from an 8-dimensional octonionic<br>space to 4-dimensional spacetime, we derive a unified formula for Standard<br>Model particle masses: m = mP (αEM/αG)1/2 Q3 i=1 κni i exp(P aini + b) with<br>κ1 = 8/9, κ2 = 1/3, κ3 = 1/7. The theory predicts a new tensor resonance<br>Y(715) with mass MY = 714.7 GeV, width ΓY = 44.8 GeV, and specific decay<br>channels: t¯t (59.8%), ZH (24.9%), ZZ (15.3%). As a geometric consequence,<br>the model resolves cosmological tensions: it predicts the BAO scale rBAO =<br>105.0 Mpc (matching DESI 2024: 105.1 Mpc) and provides a scale-dependent<br>Hubble parameter H(R) that reconciles local (H0 = 72.8) and CMB (H0 =<br>67.4) measurements. We present a complete falsifiable framework with 14<br>testable predictions for LHC Run 3, Hyper-K, DESI/Euclid, and sub-millimeter<br>gravity experiments.</p> <p><br>Keywords: fundamental constants, physics beyond the Standard Model, cosmological<br>parameters, modified gravity, octonions, LHC phenomenology.<br>PACS: 12.60.-i, 14.80.-j, 95.35.+d, 98.62.Dm, 98.80.-k, 02.40.Yy</p>
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spellingShingle Unified Geometric Theory Based on the Constant G = 4/3 : From Galactic Dynamics to the Y(715) Resonance and Resolution of Cosmological Tensions
Kryukova, Svetlana
fundamental constants, physics beyond the Standard Model, cosmological parameters, modified gravity, octonions, LHC phenomenology. PACS: 12.60.-i, 14.80.-j, 95.35.+d, 98.62.Dm, 98.80.-k, 02.40.Yy
<p>10.5281/zenodo.18550484</p> <p>Based on a statistical analysis of 175 spiral galaxies from the SPARC<br>catalog, we report the discovery of a fundamental dimensionless constant αG =<br>Π = 4/3 with > 8σ significance (⟨Π⟩ = 1.332 ± 0.012, p = 0.436). Interpreting<br>αG as a geometric projection coefficient from an 8-dimensional octonionic<br>space to 4-dimensional spacetime, we derive a unified formula for Standard<br>Model particle masses: m = mP (αEM/αG)1/2 Q3 i=1 κni i exp(P aini + b) with<br>κ1 = 8/9, κ2 = 1/3, κ3 = 1/7. The theory predicts a new tensor resonance<br>Y(715) with mass MY = 714.7 GeV, width ΓY = 44.8 GeV, and specific decay<br>channels: t¯t (59.8%), ZH (24.9%), ZZ (15.3%). As a geometric consequence,<br>the model resolves cosmological tensions: it predicts the BAO scale rBAO =<br>105.0 Mpc (matching DESI 2024: 105.1 Mpc) and provides a scale-dependent<br>Hubble parameter H(R) that reconciles local (H0 = 72.8) and CMB (H0 =<br>67.4) measurements. We present a complete falsifiable framework with 14<br>testable predictions for LHC Run 3, Hyper-K, DESI/Euclid, and sub-millimeter<br>gravity experiments.</p> <p><br>Keywords: fundamental constants, physics beyond the Standard Model, cosmological<br>parameters, modified gravity, octonions, LHC phenomenology.<br>PACS: 12.60.-i, 14.80.-j, 95.35.+d, 98.62.Dm, 98.80.-k, 02.40.Yy</p>
title Unified Geometric Theory Based on the Constant G = 4/3 : From Galactic Dynamics to the Y(715) Resonance and Resolution of Cosmological Tensions
topic fundamental constants, physics beyond the Standard Model, cosmological parameters, modified gravity, octonions, LHC phenomenology. PACS: 12.60.-i, 14.80.-j, 95.35.+d, 98.62.Dm, 98.80.-k, 02.40.Yy
url https://doi.org/10.5281/zenodo.18550484