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| Format: | Recurso digital |
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Zenodo
2026
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| Online-Zugang: | https://doi.org/10.5281/zenodo.18967834 |
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Inhaltsangabe:
- <p>The muon–electron mass ratio mµ/me is one of the most precisely measured dimensionless<br>constants in physics (PDG: 206.7682838(46)). No first-principles derivation from the Standard<br>Model exists. We show that the single algebraic constraint Φ2 = Φ + 1 (golden root φ) and<br>the gauge structure at depth k = 4 yield the exact closed-form expression mµ/me = 66 + 87φ,<br>where 66 = d + L5 − 1 and 87 = L4(L6 − F5) − 4 are fixed by the Lucas/Fibonacci sequences<br>(d = 56, L4 = 7, L5 = 11, L6 = 18, F5 = 5). The prediction agrees with CODATA/PDG<br>to six significant figures with zero free parameters. We give the derivation, the structural<br>decomposition, and the implications.</p>