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March 17, 202655 citationsOpen Access

The Renormalized Free Energy Framework: A Unified Resolution of Structural Bottlenecks

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LGLukas Geiger

Key Points

  • To provide a unified framework resolving structural bottlenecks in multiple fields including number theory and fluid mechanics.
  • Development of a mathematical framework for stability analysis.
  • Identification of Pattern A as a universal stability mechanism.
  • Update of existing models like Navier-Stokes to higher attractor levels.
  • Established that strict convexity leads to unique equilibria while non-convexity results in multiple equilibria.
  • Confirmed specific quantitative results through thermodynamic analysis.
  • Documented significant updates to fluid mechanics and number theory constructs.

Abstract

v1. 2 changelog (2026-03-15): Pattern-A table expanded from 5 to 8 instantiations (added Thermodynamic, Chemical, Biological Game Theory) New Remark: Uniqueness vs. Multiplicity in Pattern A (strict convexity → unique; non-convex → multiple equilibria) New Remark: Quantitative confirmation Sₒbs/Sₘax₂D = 0. 47 from FST-I thermodynamic fine-tuning analysis Navier-Stokes updated to H¹-level attractor distance (Sprint 2 Leray barrier finding) Turbulence updated to stability-selected dissipation (replacing MEPP) Section 5 renamed: "Primary Implementation: The Riemann Hypothesis" (FST prefix removed) Bibkeys updated: FST-RH → GeigerRH2026 v1. 1 changelog: Leray energy identity barrier documented; NS instantiation corrected to H¹-level; new bibliography entries. We present a unified mathematical framework for the resolution of structural bottlenecks across number theory, cosmology, fluid mechanics, and game theory. The framework identifies Pattern A (Second-Order Resolvent Dominance) as the universal stability mechanism.

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Cite This Study

Lukas Geiger (2026) studied this question.

synapsesocial.com/papers/69b8f0fddeb47d591b8c5bf2https://doi.org/10.5281/zenodo.19036190
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