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March 29, 20260 citationsOpen Access

Field of Resonance: A Unified Framework of Gravity and the Standard Model from a Planck-Scale SU(2) Gauge Field on an FCC Lattice

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BHBruce Hunter

Key Points

  • The aim is to unify gravity with the Standard Model and explore the implications for cosmic data and baryogenesis.
  • Expanded analysis of f(T) and f(T,T̃) theories in torsional gravity
  • Evaluation of the effectiveness of these theories against cosmological data sets
  • Exploration of baryogenesis mechanisms within the framework
  • f(T) and f(T,T̃) theories fit cosmological datasets better than ΛCDM
  • One-loop corrections to L_grav suggest viable modifications
  • Identifying torsional baryogenesis as a candidate for matter-antimatter asymmetry

Abstract

Updated February/March 2026: Section 8 (Unification) and Open Problem OP5 expanded to incorporate independent empirical support from Mishra (2026), arXiv: 2603. 01043. Section 8 adds a paragraph noting that f (T) and f (T, T̃) torsional gravity theories fit the full precision cosmological dataset suite (DESI DR2, Pantheon+SH0ES, Union3, LIGO/Virgo/KAGRA gravitational-wave standard sirens) and outperform ΛCDM by ΔAIC and ΔBIC, confirming that the TEGR-based gravitational sector of FoR is empirically viable from solar-system to Hubble-flow scales. OP5 is expanded with two paragraphs: (1) noting that one-loop corrections to Lgrav will generate effective f (T) modifications, with Mishra's best-fit functional forms as empirical constraints; (2) identifying torsional baryogenesis (∂_μT · J^μB coupling) as a candidate mechanism for the matter-antimatter asymmetry within the existing FoR field content, observationally viable within the torsion framework. One new reference added: Mishra (2026), arXiv: 2603. 01043, ApJ 981: 13 and PTEP 2025: 103E03.

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Cite This Study

Bruce Hunter (2026) studied this question.

synapsesocial.com/papers/69c8c384de0f0f753b39e68ahttps://doi.org/10.5281/zenodo.19244557
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