A unified framework predicts five fundamental constants in a static universe, suggesting new experimental verification.
We propose a falsifiable unified framework based on noncommutative geometry, scale self-duality, and the representation splitting of quantum flag manifolds SU_q(3)/T. The universe is a static S^3 algebraic-geometric isomorphism bounded by a total information capacity of N ~ 10¹²² bits, where apparent time evolution and cosmic expansion arise from modular automorphism flow-driven scale projection. From first principles, we uniquely derive and predict five core fundamental physical constants: (1) Cosmological constant ratio Λeff/ΛPlanck = 10⁻¹²² (resolving the fine-tuning problem); (2) Fine-structure constant α⁻¹ = 137.036 (with a 2.4% topological charge correction from (H^2(F_q, C))=2); (3) QCD strong coupling constant α_s(m_Z) = 0.1172 (at m_Z=91.1876\ GeV); (4) Absolute mass of the lightest neutrino m_1 = 1.87 × 10⁻³\ eV (Normal Hierarchy); (5) Higgs vacuum expectation value v = 246.219\ GeV. All constants are intrinsic topological charges or geometric ratios of the static structure, with no free fitting parameters. These predictions are testable in upcoming experiments (2025–2030) including JUNO, HL-LHC, and CMB-S4, providing a definitive verification of quantum gravity and the static block universe ontology. wxsq1638@outlook.com Xinyu Zheng Original paper;https://doi.org/10.5281/zenodo.19368089
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Zheng Xinyu (2026) studied this question.
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