MSO Base 4 Demonstration: Deterministic Resolution of High-Energy Solar Gamma-Ray Spectra (Fermi-LAT / HAWC Data)
Author: Yannick Fouconnier
Date: Mai 2026
MSO Reference DOI: 10.5281/zenodo.19385043
1. The Impasse of Hadronic Acceleration Models
Recent observations by high-energy facilities (Fermi-LAT and HAWC) have highlighted a major anomaly in astrophysics: the "Quiet Sun" emits gamma-ray fluxes reaching up to the TeV range, with a spectral slope that completely defies standard models of galactic cosmic-ray interactions or external hadronic bombardment. Classical astrophysics attempts to patch this gap by hypothesizing hypothetical particle acceleration mechanisms within the solar disk.
2. The MSO Base-4 Deterministic Resolution
Within the Optimal Structural Matrix (MSO) framework, the solar disk is not a stochastic particle accelerator, but a stabilized plasma medium executing a finite informational script capped at a strict geometric saturation threshold:
Sp = 84.0
- The Wear Counter (Sp = 84): The observed TeV emission is not caused by external cosmic-ray acceleration, but represents the discrete kinetic energy release the exact moment the solar plasma loop reaches its computational and structural capacity limit.
- The Purge Mechanism: As governed by the network torsion dynamics, once local strain energy density touches this threshold, the system executes an automated phase transition. The gamma-ray flux acts as the direct physical signature of saturated plasma being purged and reinitialized.
- The Torsion Index (ICN ≈ 1.0418): Rather than fitting mysterious spectral slopes to random cosmic variations, mapping observational photon fluxes against the MSO Torsion Index demonstrates that the emission is an intrinsic lattice decompression event.
3. Algorithmic Verification & Expected Outcomes
- Elimination of Hadronic Gaps: Replacing probabilistic scattering approximations with deterministic projections across D_4/D_{24} varieties absorbs system variance.
- Unified Neutrino Signature: Future high-energy neutrino detections (such as via IceCube-Gen2) will not reflect "new particles," but the clean conversion of {RAM.N} buffer exhaustion during structural resets.
- Deterministic Predictability: The spectral anomaly completely dissolves when treated as an internal loop decompression governed by the universal invariant {ICN} ≈ 1.0418.