Quantum Ψ Field Theory — The Instruction Manual of the Universe: A Unified Field Theory Framework with Numerical Verification This work presents a unified field theory framework — Quantum Ψ Field Theory — constructed from a single entity (the Poleon, denoted ℘) endowed with two attributes (density ρ and direction n ∈ S³). From four axioms/postulates, six fundamental equations are derived, providing a unified description of gravitational, electromagnetic, strong, and weak interactions, as well as optics, cosmology, classical mechanics, and thermodynamics — all within standard 3+1 dimensional spacetime, without requiring extra dimensions. Theoretical Framework The theory's core architecture follows Occam's razor: one entity + two attributes + four axioms → six equations → all phenomena. The six equations comprise three independent evolution equations (density evolution D, flow evolution V of Navier-Stokes type, and direction evolution N of Skyrme type) and three coupling equations (transport T, condensation C, and vortex dynamics W in Skyrme current form). From this single framework: Gravity emerges as F = K²ρ℘ ∝ 1/r² (analogous to F = qE), with G = βα/(4πm℘), and gravitational lensing arises as a refractive effect. Electromagnetism: Maxwell's equations are derived from transverse perturbations of the Ψ field. Strong interaction: The proton is modeled as a Skyrmion topological soliton (B = 1), with quark confinement explained by the three Pauli directions of the hedgehog configuration corresponding to three cleavage planes (B = 1/3). Weak interaction: Arises from S³ symmetry breaking of the directional field. 16 optical laws (reflection, refraction, dispersion, polarization, birefringence, interference, diffraction, etc.) are unifiedly derived from c = K/√ρ, with the 3D explicit form c² = αs/αt eliminating circular reasoning. Classical mechanics and thermodynamics are fully derived from the field equations. Particle Physics A dual particle model is proposed: the topological model (Skyrmion, explaining "what a particle is") and the water droplet model (condensation mechanism, explaining "how particles form"). Five formation mechanisms produce electrons (pure condensation), muons/tau leptons (rotational collapse), resonance states (collision), bosons (vibration), and protons (topological freezing). The constituent quark mass is predicted as 312.8 MeV (deviation 0.1%). Cosmology The theory proposes a non-Big-Bang cosmological paradigm: the CMB is interpreted as the visible surface of the Ψ field rather than a primordial relic; cosmological redshift is explained as adiabatic frequency drift due to wave attenuation (resolving the Tolman test, supernova time delay, and CMB blackbody spectrum triple exclusion simultaneously). Dark matter corresponds to a phase-frozen branch and dark energy to phase gradient energy. A triple cutoff mechanism resolves the cosmological constant problem. The universe is cyclic, driven by phase transitions in the O(4) universality class with Kibble-Zurek scaling. Numerical Verification High-precision predictions with deviations from experimental/standard values: Quantity Predicted Deviation Fine-structure constant α(MZ) 0.007295 −0.03% Axial-vector coupling gA 1.2717 −0.04% Weinberg angle sin²θW 0.2304 −0.35% CKM parameter λ 0.2236 −0.3% Proton magnetic moment μp (ω-meson corrected) — −1.6% πN scattering length σπN (meson cloud corrected) — 0.0% Testable Predictions Tier-1 (5 predictions): All consistent with current experiments, including zero dark matter particle detection (XENON/LUX/PandaX), external light speed variation δc/c ≈ 0 (frequency comb), gravitational wave tensor speed = c (GW170817), post-Newtonian γ = 1 (Cassini), and absence of CMB ring structures (Planck 2018). Tier-2 (8 predictions): Testable by LISA, SLACS+SPARC, and near-future experiments. Tier-3 (7 predictions): Testable by future experimental programs. Deposit Contents This deposit includes: Theory Volume (20 chapters): Complete theoretical derivation from axioms to predictions. Appendix Volume (15 appendices, A–O): Mathematical proofs, detailed derivations, and numerical verification (Skyrme parameters, Casimir energy, g-factor radiative corrections). Numerical computation suite: Python code for core calculations (Skyrme soliton, CKM matrix, coupling constants, Casimir energy). Figures and tables: 20 figures and 15 tables supporting the theoretical analysis. Review documentation: Comprehensive review report documenting the resolution of 33 P0-level critical issues and ~65 P1-level major issues. Scientific Honesty All instances where original predictions were falsified are transparently annotated with revision history. The quantization condition Q is honestly declared as a physical postulate rather than a theorem. The existence of global solutions is classified into three tiers: proven (Skyrmion sector), has a roadmap (small initial data), and open (large initial data, millennium-class problem). Keywords: Quantum Ψ Field Theory; Unified Field Theory; Poleon; Skyrmion; Topological Soliton; Gravitational Theory; Cosmology; Particle Physics; CMB; Dark Matter; Dark Energy; CKM Matrix; Fine-Structure Constant; Cyclic Universe; Directional Field Upload type: Publication / Preprint | License: CC BY 4.0 中文参考 本作品提出了一种统一场论框架——量子Ψ场论。该理论基于单一实体(极子)和两种属性(密度ρ、方向n∈S³),从四个公理出发推导出六个基本方程,在标准3+1维时空中统一描述了引力、电磁力、强力、弱力、光学、宇宙学、经典力学和热力学等领域的基本现象。 核心数值预测包括:精细结构常数偏差−0.03%、轴矢耦合常数偏差−0.04%、Weinberg角偏差−0.35%、CKM参数偏差−0.3%。理论提出5个一级可检验预测(全部与当前实验一致)、8个二级预测和7个三级预测。 本数据集包含理论卷(20章)、附录卷(15个附录A–O)、数值计算程序、图表材料及全面评审报告。
卫星 梁 (Tue,) studied this question.