Torsional Re-Locking in the Galactic Center: A G-MaTT Explanation of Cosmic Filaments, Electromagnetic Bursts, and Ultra-Fast Electron Acceleration
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Abstract We explain three recently observed phenomena at the Galactic Center — (1) filamentary “super cosmic strings”, (2) fiery turbulent bursts, and (3) electrons accelerated to PeV energies — using a single mechanism in Generalized Mass as Twisted Time (G-MaTT): torsional re-locking of desynchronized \(\hat{M}_\mu\)-knots across the coherence threshold \(v = c\sqrt{\alpha/w}\). These structures are not magnetic, not relativistic jets, and not accretion-driven — they are phase boundaries and shock fronts in the primordial torsion field. Filaments mark re-locking interfaces; bursts result from torsional avalanches; electron acceleration arises from phase jolts, not magnetic reconnection. All predictions follow from the geometrically derived fine-structure constant \(\alpha^{-1} = 137.035999206\) (Yeo, 2025a) and the reversible desynchronization framework (Yeo, 2025b). We predict: Non-thermal, discrete emission lines from knot transitions, Sub-second variability in bursts correlated with torsional timescales, Electron energy cutoff at \(E_{\text{max}} \approx m_e c^2 / \alpha \approx 70\ \text{GeV}\) (or PeV for \(w=3\) knots), No correlation with magnetic field strength. This is the first theory to unify these phenomena without black holes, exotic matter, or ad hoc fields.



