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Bibliographic Details
Main Author: Bachani, Suhail
Format: Recurso digital
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Published: Zenodo 2025
Online Access:https://doi.org/10.5281/zenodo.17761306
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Table of Contents:
  • <p>We demonstrate that fundamental particle physics parameters emerge from <br>topological constraints on a discrete 21-state vacuum structure selected from <br>64 possible 6-bit binary configurations. The solar neutrino mixing angle follows <br>golden-ratio geometry: $\sin^2\theta_{12} = (\varphi-1)/2 = 0.309017$, matching <br>JUNO's measurement of $0.3092 \pm 0.0087$ (November 2025) within $0.02\sigma$. <br>The QCD coupling $\alpha_s(M_Z) = 0.1179$ emerges from 47.6\% occupancy of <br>allowed states, verified against lattice QCD data ($p < 10^{-6}$). The <br>electromagnetic fine structure constant $\alpha^{-1} = 137.036$ follows from <br>the ratio of total to allowed states. A chiral distinction between quark <br>states $|001001\rangle$ and lepton states $|011001\rangle$ predicts the solar <br>neutrino tension confirmed by JUNO at $1.5\sigma$. We present five falsifiable <br>predictions testable by 2028.</p>