The Muon g−2 Anomaly as Generational Phase Misalignment in G-MaTT
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Abstract The persistent discrepancy between the measured muon anomalous magnetic moment \(a_\mu = (g-2)/2\) and Standard Model predictions — Δa_μ ≈ 5.1 × 10^{-10} (∼5σ as of 2025) — is derived from first principles in Generalized Mass as Twisted Time (G-MaTT). The anomaly arises as a geometric correction from the muon's higher-generation braid (w=2) relative to the electron (w=1), manifesting as phase misalignment in twistor-embedded manifolds. The correction scales with the generational volume ratio and spin precession offset, yielding Δa_μ exactly matching the observed value without new particles or adjustable parameters. This result unifies the anomaly with the charged fermion mass hierarchy and provides falsifiable predictions for future precision measurements. G-MaTT thus explains one of the strongest hints of beyond-Standard-Model physics as an intrinsic consequence of topological phase geometry.



