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April 7, 20260 citationsOpen Access

Arithmetic Information Entropy and the Hubble Tension: A Deterministic Derivation of the α-Drift from Riemann Zeta Zeros

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TKThomas Krause

Key Points

  • The central aim is to address the Hubble Tension by exploring the variability of the fine-structure constant within a new theoretical framework.
  • Developed the Arithmetic Theory of Everything (AToE) framework.
  • Derived fundamental constants from the Riemann Zeta function's zeros.
  • Analyzed discrepancies between early and late universe measurements.
  • Utilized GUE statistics to support mathematical proofs.
  • Demonstrated that the fine-structure constant follows a non-linear, deterministic drift.
  • Linked the fine-structure constant's drift to the Prime Number Theorem.
  • Proposed that cosmic expansion arises from Arithmetic Cooling in a quantized space.

Abstract

This paper proposes the Arithmetic Theory of Everything (AToE), a novel theoretical framework that derives fundamental physical constants from the spectral density of the non-trivial zeros of the Riemann Zeta function The study adresses the "Hubble Tension"—the 5.6 km/s/Mpc discrepancy between early-universe (CMB) and late-universe (Local) measurements—by demonstrating that the fine-structure constant 𝛼 is not a static parameter. Instead, it follows a non-linear, deterministic drift driven by the Prime Number Theorem. This work suggests that the expansion of the universe is an emergent phenomenon of "Arithmetic Cooling" within a quantized Prim-Fock space. Notes:This research was developed within the AToE Theoretical Framework. All mathematical proofs rely on the GUE statistics of the Riemann spectrum

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Cite This Study

Thomas Krause (2026) studied this question.

synapsesocial.com/papers/69d49fe5b33cc4c35a22856bhttps://doi.org/10.5281/zenodo.19432941
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