Unified field theory derives fundamental forces using a single field for energy levels, suggesting new applications.
A self-consistent unified field theory based on a single fundamental field φ (the Compatibility Field). The theory derives gravity, electromagnetism, strong and weak nuclear forces from the geometric and topological properties of φ under density stratification across five energy levels (dimensions as energy tiers, not spatial directions). Core framework:• φ-field density defines energy tiers (2D = 3D ground state/vacuum, 3D = 3D–4D transition, 4D = 4D superposition/black hole)• Unified derivation of gravitational constant G, fine-structure constant α, cosmological parameters (Ω_DM/Ω_b = 5.464), and particle mass ratios• Topological invariant χ = 2 (Euler characteristic of S²) constrains all force balances• Quantitative predictions including: μon mass ratio (2^7.69 ≈ 207, deviates <0.1% from experimental 206.8), R_inter = 66.6 from Gauss–Bonnet theorem, l_min = 13 μm, mini black hole density ρ_max = 5.1×10⁹⁶ kg/m³, and effective dimensionality D_eff = 5• Applications span nuclear fusion (D-T ignition criteria), anti-gravity mechanism, superconductivity T_c estimation, and neutrino mass structure All numerical results independently verified via Python. The theory is presented with full transparency: every derived constant is traced to its physical origin, and open questions are explicitly flagged. Language: Chinese (primary) with selected English chapters.
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C. Liu (2026) studied this question.
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