Huashan Framework Unified- Standard- Field Mother- Formula · Publication White Paper
This is the frozen‑finalized V1.0 preprint of the Huashan Framework Unified‑Standard‑Field Mother‑Formula White Paper. The core manuscript was sealed and notarized at Lunan Notary Public Office, Zaozhuang, Shandong Province on 2026‑08‑12, Notarial Certificate No. (2026) Lu‑Zaozhuang‑Lunan‑Not‑Affair‑Zi No. 30. This document has not undergone external peer‑review nor formal journal publication. The Huashan Framework is a candidate relativistic unified‑field theory built upon two fundamental axioms and one four‑dimensional tensor mother equation. It constructs a complete degeneration chain toward classical gravity, electromagnetism, quantum mechanics and gauge‑field theories. Four benchmark validation cases are defined, including galactic rotation‑curve computation without invoking dark‑matter hypotheses. In this version, coupling coefficients for electromagnetic, strong and weak channels are directly derived and benchmarked against experimental data. The full analytical solution for the gravitational channel remains work‑in‑progress; the standard Newtonian gravitational constant G is provisionally adopted as gravitational coupling coefficient to preserve dimensional continuity across the four‑force unification degeneration chain. Preliminary analysis indicates a structural distinction: electromagnetic, strong and weak forces are phase‑interference‑type interactions modulated by \(\cos\phi\), whereas gravitation acts as an environmental‑density‑gradient‑type interaction independent of angular phase. Several explicit mathematical constructions, complete derivation steps and error‑analysis routines are deferred to follow‑up V1.1 and later special‑topic papers, as clearly documented inside this preprint.
Authors
- 梁华山
Publication Details
- Journal
- Zenodo (CERN European Organization for Nuclear Research)
- Published
- 2026-09-24
- DOI
- https://doi.org/10.5281/zenodo.22933903
- Primary Topic
- Cosmology and Gravitation Theories
- Type
- preprint