We present the Octonionic Pixel Theory (OPT), a framework deriving spacetime, matter, and fundamental forces from a discrete network of entities carrying octonionic phases. The theory achieves: (1) emergence of 3+1 dimensional spacetime, (2) Einstein field equations via Regge calculus, (3) the gauge structure U (1) × SU (2) × SU (3) from octonionic algebra, (4) exactly three fermion generations from 3D knot topology, (5) all nine charged fermion masses from the Planck mass with ~2. 2% average error using zero free parameters, (6) the Higgs boson mass (123. 3 GeV, error 1. 6%) and the "sombrero" potential from S⁷ Laplacian eigenvalues, (7) the Cabibbo angle with 0. 04% error from the Hopf fibration S⁷→S⁴, (8) neutrino masses with a derived formula achieving ~3. 3% error on squared mass differences (NuFit 6. 0), (9) the cosmological constant with 0. 8% error, and (10) observers as self-referential patterns within frustration. Section 9. 6 provides a complete derivation of matter-antimatter asymmetry from octonionic non-associativity, with three lemmas establishing the inevitability of the result. The sharp falsifiable prediction is: Σm_ν = 59. 2 ± 1. 9 meV, testable by Euclid/DESI by 2028.
Alessandro Schino (Thu,) studied this question.