MUT Complete Master Archive v9.0 : v7.x Through Parts 1–50 (Full Consolidation, September 2026)

This archive is the Complete Master Archive of the Myo Min Aung Unified Theory (MUT), a physics research programme developed by Myo Min Aung, an independent researcher based in Yangon, Myanmar. It brings together the theory's entire development history, from the original v7.x source volumes through v8.70, merged into a single, chronologically ordered, unabridged document spanning 818 pages — over thirty editions, derivations, code appendices, and verification notes consolidated into one comprehensive reference volume. Key results and resolved problems: Massive + Screened Scalar–Tensor Action — a gravitational action equipped with a Vainshtein/chameleon screening mechanism that recovers General Relativity at Solar-System scales. The PPN parameter (γ) is derived via an exact algebraic resummation, independently confirmed through symbolic computation (SymPy) and cross-checked with multiple numerical integrators. Cosmological Big Bounce Trajectory — a closed-form analytic solution a(t) to the theory's modified Friedmann equation is derived for the first time, exhibiting a genuine smooth turnaround (ä(0) > 0), verified both by symbolic proof and by three independent numerical integrators. Higgs Mass via Asymptotic-Safety Criticality — using the published 2-loop Standard Model RGEs, the Higgs quartic-coupling criticality boundary condition is used to compute a non-circular prediction of Mh = 129.7 GeV, converging toward the measured value (125.2 GeV) as loop order increases. Cross-Sector Consistency Audits — the theory is checked against real observational data, including a GW170817 disformal-coupling constraint, MGCAMB/CLASS perturbation and Planck-likelihood checks, S8/H0 tension quantification, and an Ultra-Diffuse Galaxy environment sweep. U(1) Embedding & QCD Coarse-Graining — a formal derivation embedding the theory's hierarchy mechanism within a gauge-theory framework. Phase-Sensitive Gravitational-Wave Pipeline — an inspiral scalar-phase prediction pipeline built and tested against real data. The archive is organized into two parts. Part A (pp. 1–430) reproduces, verbatim, the author's prior master archive covering v7.x through v8.45. Part B (pp. 431 onward) consists of the post-v8.45 consolidation (v8.46–v8.70), covering the exact PPN resummation, the disformal/GW170817 audit, the perturbation and likelihood checks, the hierarchy-mechanism audits, the gravitational-wave pipeline, and a final construction-phase summary. A distinguishing feature of this compilation is its emphasis on reproducibility: each derivation is backed by symbolic verification, independent numerical cross-checks, and comparison against the published literature, with the corresponding Python/SymPy verification code included as an appendix throughout. Keywords: unified field theory; scalar-tensor gravity; screened gravity; PPN formalism; cosmological bounce; asymptotic safety; Higgs mass criticality; gravitational waves; GW170817; disformal coupling; MGCAMB; CLASS perturbation; independent physics research; Myanmar

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-09
DOI
https://doi.org/10.5281/zenodo.22664794
Primary Topic
International Science and Diplomacy
Type
preprint
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MUT Complete Master Archive v9.0 : v7.x Through Parts 1–50 (Full Consolidation, September 2026)

Myomin Aung
Zenodo (CERN European Organization for Nuclear Research)
International Science and Diplomacy
preprint

MUT Complete Master Archive v9.0 : v7.x Through Parts 1–50 (Full Consolidation, September 2026)

Myomin Aung
preprint en

Abstract

This archive is the Complete Master Archive of the Myo Min Aung Unified Theory (MUT), a physics research programme developed by Myo Min Aung, an independent researcher based in Yangon, Myanmar. It brings together the theory's entire development history, from the original v7.x source volumes through v8.70, merged into a single, chronologically ordered, unabridged document spanning 818 pages — over thirty editions, derivations, code appendices, and verification notes consolidated into one comprehensive reference volume. Key results and resolved problems: Massive + Screened Scalar–Tensor Action — a gravitational action equipped with a Vainshtein/chameleon screening mechanism that recovers General Relativity at Solar-System scales. The PPN parameter (γ) is derived via an exact algebraic resummation, independently confirmed through symbolic computation (SymPy) and cross-checked with multiple numerical integrators. Cosmological Big Bounce Trajectory — a closed-form analytic solution a(t) to the theory's modified Friedmann equation is derived for the first time, exhibiting a genuine smooth turnaround (ä(0) > 0), verified both by symbolic proof and by three independent numerical integrators. Higgs Mass via Asymptotic-Safety Criticality — using the published 2-loop Standard Model RGEs, the Higgs quartic-coupling criticality boundary condition is used to compute a non-circular prediction of Mh = 129.7 GeV, converging toward the measured value (125.2 GeV) as loop order increases. Cross-Sector Consistency Audits — the theory is checked against real observational data, including a GW170817 disformal-coupling constraint, MGCAMB/CLASS perturbation and Planck-likelihood checks, S8/H0 tension quantification, and an Ultra-Diffuse Galaxy environment sweep. U(1) Embedding & QCD Coarse-Graining — a formal derivation embedding the theory's hierarchy mechanism within a gauge-theory framework. Phase-Sensitive Gravitational-Wave Pipeline — an inspiral scalar-phase prediction pipeline built and tested against real data. The archive is organized into two parts. Part A (pp. 1–430) reproduces, verbatim, the author's prior master archive covering v7.x through v8.45. Part B (pp. 431 onward) consists of the post-v8.45 consolidation (v8.46–v8.70), covering the exact PPN resummation, the disformal/GW170817 audit, the perturbation and likelihood checks, the hierarchy-mechanism audits, the gravitational-wave pipeline, and a final construction-phase summary. A distinguishing feature of this compilation is its emphasis on reproducibility: each derivation is backed by symbolic verification, independent numerical cross-checks, and comparison against the published literature, with the corresponding Python/SymPy verification code included as an appendix throughout. Keywords: unified field theory; scalar-tensor gravity; screened gravity; PPN formalism; cosmological bounce; asymptotic safety; Higgs mass criticality; gravitational waves; GW170817; disformal coupling; MGCAMB; CLASS perturbation; independent physics research; Myanmar

Zenodo (CERN European Organization for Nuclear Research)
International Science and Diplomacy
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