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April 4, 20260 citationsOpen Access

The KMS Foundation of Relational Information Dynamics: Why the Bunch-Davies Vacuum Implies g† = 2cH0,dS/π2

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RFRicardo Fernández

Key Points

  • The aim is to establish a rigorous principle underlying the derivation of galactic acceleration and the relational information dynamics.
  • Derived galactic acceleration using the KMS state of the Bunch-Davies vacuum.
  • Analyzed the fluctuation-dissipation theorem's implications for two-point functions.
  • Reconstructed the RID derivation chain from a single axiom without heuristics.
  • Confirmed that the galactic acceleration formula g† = 2cH₀,dS/π² is rigorously based on the KMS condition.
  • Replaced heuristic derivations with a theorem-based approach.
  • Established a complete understanding of the previous trilogy of papers.

Abstract

Papers 1 and 2 of this series derived the galactic acceleration floor g† = 2cH₀,dS/π² and provided physical mechanisms for the coefficient. Both papers relied on the proportionality aₙ ∝ τₙ ∝ 1/n (coupling amplitude proportional to Margolus-Levitin evolution time), labelled explicitly as heuristic. This paper identifies the single physical principle from which that proportionality follows rigorously, and from which the entire RID derivation chain can be reconstructed without heuristic steps. The principle is: the Bunch-Davies vacuum is a KMS state with respect to modular flow at inverse temperature β = 2π/H₀,dS. For a KMS state, the fluctuation-dissipation theorem gives a two-point function C̃(ω) ∝ 1/ω at the natural mode frequencies ωₙ = nH₀,dS (where βωₙ = 2πn and the Bose factor is exponentially suppressed). This directly gives aₙ ∝ 1/n, replacing the heuristic with a theorem. The trilogy is then complete: Paper 1 states the result; Paper 2 provides the covariant mechanism; Paper 3 identifies the single axiom — the KMS condition of the Bunch-Davies vacuum — from which everything follows.

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Cite This Study

Ricardo Fernández (2026) studied this question.

synapsesocial.com/papers/69d0afb4659487ece0fa5be4https://doi.org/10.5281/zenodo.19392414
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Toward a Covariant Extension of Relational Information Dynamics: The Einstein-Langevin Route to Q_μν2026
  2. 2Relational Information Dynamics: A Parameter-Free Derivation of the Galactic Acceleration Floor from de Sitter Modular Theory2026
  3. 3Relational Information Dynamics: A Parameter-Free Derivation of the Galactic Acceleration Floor from de Sitter Modular Theory2026
  4. 4The Horizon as Active Participant: Wider Implications of Relational Information Dynamics2026
  5. 5A Provably One-Parameter Theory of Gravity and the Dark Sector: the de Sitter-MOND Coefficient kappa=1/2 Is Unforceable Geometry2026