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February 28, 20260 citationsOpen Access

Axiom Zero: The Entropic Genesis of Physical Law from Information

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ACAnkur Chakraborty

Key Points

  • To propose a theoretical framework, Relational Information Theory, that connects entropy with fundamental physical constants.
  • Introduced Axiom 0 linking total entropy to reference frame differentials.
  • Derived Planck's constant, gravitational constant, and fine structure constant mathematically.
  • Analyzed agreement of derived constants with experimental data up to 7 parts per billion.
  • Achieved a mathematical expression for the inverse of the fine structure constant close to experimental values.
  • Presented derivations for the weak mixing angle and nucleon-to-electron mass ratios.
  • Highlighted potential emergence of physical constants from information-geometric principles.

Abstract

We propose a theoretical framework called Relational Information Theory (RIT),founded on a single postulate: the total entropy of a physical system equals the sumof its reference frame differentials. This axiom—which we call Axiom 0—representsa synthesis of Boltzmann’s statistical mechanics, Shannon’s information theory, andPlanck’s quantum hypothesis. From this starting point, we derive (rather than assume) Planck’s constant ℏ, Newton’s gravitational constant G, and the fine structureconstant α. The derivation of α−1 = π+π2+ 4π3−8π4α3 ≈ 137.036 achieves agreement with experiment at the level of 7 parts per billion, with no free parameters. Wealso present derivations of the weak mixing angle and nucleon-to-electron mass ratios. While significant open questions remain—particularly regarding higher-ordercorrections and independent experimental tests—these results suggest that the fundamental constants may emerge from information-geometric constraints rather thanbeing irreducible inputs to physics.

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Cite This Study

Ankur Chakraborty (2026) studied this question.

synapsesocial.com/papers/69a287130a974eb0d3c027a8https://doi.org/10.5281/zenodo.18763121
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