TITLE:
New Subquantum Informational Mechanics: A Rigorous Reconstruction of Fundamental Physics from Informational Oscillations
AUTHORS:
Sergiu Vasili Lazarev
KEYWORDS:
NMSI, Informational Mechanics, Emergence, Riemann Oscillatory Network, Fundamental Operators, Contextual Constants, Architectural Thresholds, Mathematical Trap, Falsifiable Predictions, Quantum Gravity Unification
JOURNAL NAME:
Journal of High Energy Physics, Gravitation and Cosmology,
Vol.12 No.3,
July
31,
2026
ABSTRACT: We present the complete mathematical foundations of New Subquantum Informational Mechanics (NMSI), demonstrating that fundamental physical concepts—mass, energy, gravitational force, spacetime geometry—are not ontological primitives but emergent properties of a deeper informational substrate. Through rigorous construction of the π-indexed Riemann Oscillatory Network (RON) and axiomatic derivation of informational dynamics, we establish that information, not energy, constitutes the fundamental substrate of physical reality. The framework derives the emergence of fundamental constants (ħ, c, G) from RON spectral structure, establishes precise connections to Riemann zeta function zeros ζ(1/2 + itn), and predicts the existence of architectural thresholds at L* ≈ 24 significant digits. NMSI resolves long-standing conceptual paradoxes of modern physics—wave-particle duality, wavefunction collapse, spacetime nature—by reducing them to elementary informational phenomena formulated in rigorous operator-theoretic language. The mathematical framework includes complete proofs for: 1) necessity of informational substrate (no-go theorem for matter-first ontologies), 2) uniqueness of 3 + 1 dimensional spacetime (stability analysis), 3) derivation of Einstein field equations from informational action principle (all steps explicit), 4) emergence of Standard Model gauge structure SU(3) × SU(2) × U(1), and 5) generation mass hierarchy from RON spectral properties. A critical component is the Mathematical Trap construction (Part E)—seven theorems establishing a Point of No Return beyond which NMSI predictions become inevitable, explaining the framework’s multiple discrete falsifiable predictions. Ten falsifiable experimental predictions are presented with explicit timelines (2025-2035), instrumentation requirements, and statistical significance thresholds: hydrogen 1S-2S spectroscopy shifts (Δν = 2.8 ± 1.2 Hz), atomic interferometry phase measurements (δφ ≈ 10−8 rad), cosmological distance-redshift deviations (δ(z) = −0.15z2 for z > 3), stellar mass upper bounds (mstar M☉), CMB phase correlations (
C
l
phase
~ 10−6 for l H0: 67 vs 73 km/s/Mpc), JWST observations of massive high-redshift galaxies (z > 10), and reinterprets dark matter and dark energy as informational phenomena rather than exotic particle species. All results maintain consistency with established physics (quantum mechanics, general relativity, Standard Model) while predicting novel effects at precision frontiers and extreme scales.