The Planck-Scale Stochastic Background Field: The Emergent Origin of Gravity, Time, and Inertia: A Unified Hydrodynamic Framework for Quantum Mechanics and General Relativity
This work proposes a unified framework for quantum mechanics and general relativity, suggesting emergent properties from a stochastic background field.
Key Points
This research aims to unify General Relativity and Quantum Mechanics by proposing that spacetime emerges from a deeper stochastic background field.
Proposes a hydrodynamic approach to Einstein field equations.
Derives time dilation as a wave drag effect.
Models gravity through optical refraction caused by lattice density gradients.
Explains inertia using Langevin dynamics and statistical averages.
Addresses singularities with a discrete lattice structure.
Derivation of a light deflection angle of 1.75 arcseconds confirms the model.
Provides a dynamic explanation for dark energy as lattice pressure.
Successfully recovers Newton's laws from statistical mechanics.