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| Main Author: | |
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| Format: | Recurso digital |
| Language: | English |
| Published: |
Zenodo
2025
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| Online Access: | https://doi.org/10.5281/zenodo.15147980 |
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Table of Contents:
- <p>This paper explores a groundbreaking convergence between experimental data from CERN and the theoretical framework of the Unified Theory of Informational Spin (TGU). On March 31, 2025, the CMS collaboration detected a highly coherent, pseudoscalar resonance at the top-antitop threshold — the ηₜ signal. Traditionally interpreted as a QCD-bound state, its behavior raises deeper questions about coherence, CP violation, and ultra-short-lived spin alignment.</p> <p>Through the lens of TGU, this excess is reinterpreted not as a new particle, but as an <strong>emergent informational resonance</strong> — a fleeting structure born from the collapse and reorganization of the spin field under critical informational conditions. This coherence-driven emergence parallels the cosmological matter creation mechanisms previously described in the TGU framework, where gravitational waves disturb the spin lattice, allowing matter to crystallize from pure information.</p> <p>With predictive power extending beyond the Standard Model, this perspective opens new paths in high-energy physics, suggesting that what we observe as particles might be transient expressions of <strong>universal informational harmonics</strong> — organized not by mass or force, but by <strong>coherence</strong>.</p>