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MMA-DMF A One-Scale Deterministic New Standard Model and a Bridge to Macro Physics+Yang–Mills Solution

Submitted:

31 December 2025

Posted:

31 December 2025

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Abstract
We present MMA-DMF as a one-scale deterministic effective-field theory that reinterprets Standard-Model (SM) mass generation and explicitly confronts macrophysical observables. The framework is locked to a single ultraviolet rigidity scale $M \simeq 100~\mathrm{TeV}$ (Table~4) and replaces continuous flavor inputs with discrete geometric charges $q_f$ (Table~23). In this archive-driven interpretation, inertial mass arises from topological friction: a deterministic drag response of the structured scalar vacuum field $\phi$ encoded in the generalized Langevin / strict fluctuation--dissipation closure (Eq.~8). The 125~GeV resonance is treated as a phonon-like breathing mode of vacuum rigidity (App.~7.4); weak processes are described as topological relaxation via $W/Z$ vortices; and the photon is identified as the gapless $U(1)$, zero-winding mode that remains massless while sensing the vacuum through $\phi F_{\mu\nu}F^{\mu\nu}$ couplings. Finally, the strong interaction is treated as Borromean-ring confinement of scalar flux, so that gluons and an independent $SU(3)$ gauge sector are not fundamental inputs but emergent topological bookkeeping (Sec.~2.14). Beyond consolidating the final rectified equations (including the operational effective-density convolution, Eq.~31.20, and $C^2$ smootherstep nuclear gates, Eq.~13.19), we assemble the dated, deduplicated validation suite emphasized by the audit trail. The ``bridge to macro physics'' is a primary target: GNOME network differential-delay timing (including station overburden effects in $\rho_{\mathrm{eff}}$, where a $1~\mathrm{s}$ surface transient can map to a $\sim 20~\mathrm{ms}$ underground blip) and the mandatory negative-chirp ``Sad Trombone'' veto (forensic logs report $\sim 99.8\%$ rejection of anthropogenic false positives), post-merger gravitational-wave echoes in locked Hayward-regularization windows (e.g.\ $\sim 36~\mathrm{ms}$ for GW150914-class ($\sim 60~M_\odot$) remnants; $\sim 135~\mathrm{ms}$ for the $\sim 225~M_\odot$ high-mass anchor class), Earth neutrino tomography with core-versus-mantle tension, the global 21~cm thermal history with irreducible stochastic heating, and a characteristic dip in galaxy--lensing cross-power. Ablation controls collapse the GNOME correlation to $\mathrm{SNR} \approx 0.4$ when $\Delta T_{ij}$ is removed (Table~19). Microphysical anchoring is provided by lattice convergence of the proton soliton mass to $938.27~\mathrm{MeV}$ with no parameter retuning. The core contribution is an explicitly falsifiable, binary Diamond protocol (Science Run~7, Sec.~6.2): failure of any locked criterion refutes the corresponding sector without introducing new free parameters.
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