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February 14, 2026Open Access

The Torsional Manifold: A Parameter-Free Unification of Particle Physics and Cosmology from the Geometry of S⁵

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Authors

TÖTor Ivar Lars Rossing Öberg

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Overview

Monograph derives particle masses and cosmological parameters from geometry, suggesting a unified theory of physics.

Key Points

  • The study aims to derive fundamental physics parameters from a unified geometric framework involving torsional relaxation on S⁵.
  • Derivation of the Standard Model particle spectrum and cosmological parameters from integers and constants.
  • Utilization of torsional overlap integrals to compute CKM and PMNS matrices.
  • Empirical validation against observational data including supernovae and CMB findings.
  • Analysis of geometric selection rules to explain phenomena like color confinement and electroweak symmetry breaking.
  • Successfully derived 17 Standard Model particle masses with a mean error of 0.028%.
  • The fine structure constant and Weinberg angle achieved high accuracy with mean errors of 0.0002% and 0.002%, respectively.
  • Predicted the Hubble constant at 67.5 km/s/Mpc with a 0.1% error, along with cosmological energy budget parameters.
  • Resolved S₈ tension with empirical validation against five weak lensing surveys.

Cite This Study

Tor Ivar Lars Rossing Öberg (2026) studied this question.

synapsesocial.com/papers/699011712ccff479cfe581b2https://doi.org/10.5281/zenodo.18624695
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