Electron, Proton, Neutron: Foundational Matter from Three Integers - No Quarks No Gluons
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The three particles that constitute all ordinary matter in the universe are derived in Temporal Congestion Mechanics from a single structural mechanism. Each particle is a closed-ring topological soliton of the fabric n(x, t), indexed by three integers on the catalogue lattice. The electron at (1, 1, 115) calibrates the catalogue floor. The proton at (16, 1, 1) is a forward prediction giving mass 936.8 MeV/c² (0.16% match), charge radius 0.84 fm matching the CODATA value of 0.841(19) fm, and proton-electron mass ratio m_p/m_e = 16 × 115 = 1840 (0.21% match). The neutron sits at the same lattice point as the proton, distinguished by a sub-winding phase-flip, with mass splitting 1.293 MeV/c² matching observation exactly. The integer-lattice catalogue replaces nine free fermion-mass parameters of the Standard Model with one calibration and zero additional free parameters. The framework introduces no fitted parameters; every prediction follows from the ten anchored inputs of the parent framework. Three integers, three particles, all ordinary matter.



