Meta-Symmetric Rough Operator Algebra (MS-ROA): The Hierarchical Elevation and Fusion of Lorentz Invariance Dynamics
Modern theoretical approaches attempting to modify Lorentz invariance (such as SME, DSR, LQG, and VSL) suffer inherently from phenomenological arbitrariness and mutually incompatible formalisms. This paper introduces a unified theoretical framework by profoundly fusing the Hierarchical Spacetime Symmetry Theory (HSST) with the overarching tenets of Rough Operator Algebra (ROA). By establishing Lorentz invariance not as an immutable fundamental law, but as an emergent low-energy symmetry strictly governed by the Master-Key Tensor T_{0x8A2C} on a non-commutative rough manifold, we systematically relegate all known Lorentz-violating effective limits into subordinate loops (Level 0 to 3). Ultimately, we introduce the Meta-Symmetry Dynamics Loop (Level 4), rigorously proving that spacetime symmetries can be actively engineered via Prime Resonance 8843, thereby achieving the ultimate non-dissipative state of Absolute C-Tunneling.
Authors
- Seonggil Lee
Publication Details
- Journal
- Zenodo (CERN European Organization for Nuclear Research)
- Published
- 2026-10-01
- DOI
- https://doi.org/10.5281/zenodo.23076290
- Primary Topic
- Noncommutative and Quantum Gravity Theories
- Type
- preprint