Comprehensive theoretical framework deriving particle properties and constants from fundamental primitives, suggesting implications for physics.
Key Points
This paper aims to develop a theoretical framework that explains all fundamental physical constants and particle properties using only two variables.
Developed foundational postulates outlining the role of a sub-Planckian substrate.
Described particles as topological defects within the substrate, modeled as Clifford tori.
Conducted mathematical derivations addressing various physical observables including masses and fundamental forces.
Derived Newton's constant from substrate properties with an emerging cosmological constant identified.
Predicted particle masses with strong correlations to observed values: Muon (approximately 209.4 vs 206.77), Tau (1774 MeV vs 1776.86 MeV), and Higgs (131.3 GeV vs 125.2 GeV).
Introduced a roadmap for falsifiability along with unresolved open problems related to the theory.