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April 3, 2026Open Access

Bootstrapping Physics from Stationary Stochastic Processes: From the Fokker-Planck Equation to Quantum Mechanics, Thermodynamics, and General Relativity

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Authors

AWAlexander Waletzki

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Overview

This preprint uncovers physical laws from stationary stochastic processes, indicating a novel unified framework.

Key Points

  • The aim is to derive mathematical structures of major physics theories from the Fokker-Planck equation.
  • Proposed a framework linking the Fokker-Planck equation to quantum mechanics, thermodynamics, and relativity.
  • Extended diffusion coefficients and reinterpreted coordinates in terms of probabilities.
  • Verified prerequisites through Jacobson’s theorem and established a dimensionless formalism.
  • Demonstrated Wick rotation as a solution preserving physical properties.
  • Showed emergence of 3+1 dimensional Minkowski spacetime post double Wick rotation.
  • Derived the nonlinear Einstein equation and identified dependencies of fundamental constants on a single scale.

Cite This Study

Alexander Waletzki (2026) studied this question.

synapsesocial.com/papers/69cf5ebc5a333a821460d42ehttps://doi.org/10.5281/zenodo.19373242
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