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| Format: | Recurso digital |
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Zenodo
2025
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| Online Access: | https://doi.org/10.5281/zenodo.17419237 |
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Table of Contents:
- <p>The TD3R theory (Ternary Dimensional Dynamics Revised), developed<br>by Y.-P. Taburet and published on Rxivverse (2025), is a new conjecture of multiuniverse<br>cyclic cosmology. It proposes that the observable spacetime (D4) holographically<br>emerges from a pre-geometric six-dimensional bulk (D6), governed by a<br>fundamental ternary symmetry Z3.<br>At the heart of TD3R lie three conjugate fields of gravitational instantons, denoted<br>(I1, I2, I3), representing respectively the components of gravitation (G), geometry<br>(Γ), and information (Φ). Their dynamic coupling generates a complex rotation<br>of order three:<br>Φ(τ + 1) = ei2π/3 Φ(τ ),<br>which defines the fundamental triadic pulsation:<br>ωϕ =2π/ln φ≈ 13.1,<br>where φ is the golden ratio. This value, purely geometric and without any parameter<br>adjustment, represents a universal constant of the gravitational quantum vacuum,<br>likely to manifest as log-periodic oscillations in cosmological spectra.<br>Until now, no observational study had revealed this pulsation ωϕ, due to the absence<br>of a theoretical framework to search for it. However, the article by Federico<br>Greco (2025, arXiv:2510.17556) on the production of gravitational waves during<br>aligned inflationary transitions shows a spectrum exhibiting quasi-periodic oscillations<br>of non-trivial origin. From Greco’s Figures 5 and 6, one measures an average<br>logarithmic separation:<br>Δln f ≃ 0.48 ± 0.05,<br>corresponding to an effective frequency:<br>ωeff =2π/Δln f= 13.1 ± 0.65,<br>in remarkable agreement (within 1σ) with the triadic prediction of TD3R.<br><br><br></p>