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March 4, 20260 citationsOpen Access

The Kerr-Salpeter Cosmological Model: Geometric Dark Energy, Holographic Unification, and the Dynamical Spacetime Engine

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FGFlavio Gomes

Key Points

  • The research aims to develop a cosmological model addressing dark energy and the Big Bang singularity.
  • Proposed a cosmological framework based on a hyper-massive Kerr black hole.
  • Derived a regularized background mimicking Friedmann-Lemaître-Robertson-Walker spacetime.
  • Resolved the Big Bang singularity with a non-singular Einstein-Cartan bounce.
  • Introduced a kinematic elongation factor to address Hubble tension.
  • Outlined experimental methods for validating the model using atom interferometry.
  • Identified dark energy as centrifugal pressure from the parent black hole.
  • Analytically derived a primordial scalar spectral index matching cosmic microwave background data.
  • Achieved internal stability against mass inflation through fractal boundary conditions.
  • Explained cosmic birefringence and large-scale multipole alignments effectively.

Abstract

We propose a cosmological framework in which the observable universe resides within the interior of a hyper-massive Kerr black hole existing in a higher-dimensional parent universe. In this model, the phenomenon currently attributed to dark energy is identified as the mechanical manifestation of centrifugal pressure resulting from the macroscopic frame-dragging of the parent black hole. By spatially averaging the interior Kerr metric using covariant macroscopic gravity, we derive a regularized background that mimics a Friedmann-Lemaître-Robertson-Walker spacetime while retaining an irreducible chiral signature. This geometric approach replaces the standard inflationary paradigm with a pre-bounce contracting phase, analytically deriving a primordial scalar spectral index that matches current cosmic microwave background observations as a direct consequence of the parent's rotational kinetic energy. The framework resolves the Big Bang singularity via a non-singular Einstein-Cartan bounce, providing the necessary CP-violating torsion for gravitational baryogenesis. Furthermore, we address the Hubble tension through a kinematic elongation factor derived from the topological variance of the macroscopic rotational shear, and ensure internal Cauchy stability against mass inflation via fractal boundary conditions. The model also accounts for the cosmic birefringence angle, explains large-scale multipole alignments as a frozen primordial ringdown mode, and naturally aligns the local macroscopic entropy with the covariant Bousso bound. Finally, we propose a direct experimental path to falsify this framework using spin-squeezed atom interferometry to detect the global cosmological frame-dragging.

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Cite This Study

Flavio Gomes (2026) studied this question.

synapsesocial.com/papers/69a7cdaed48f933b5eeda4a5https://doi.org/10.5281/zenodo.18837056
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Also Consider

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

  1. 1The Kerr-Salpeter Cosmological Model: Resolving the Hubble Tension and Dark Energy via Macroscopic Frame-Dragging and Holographic Unification2026
  2. 2The Kerr-Salpeter Cosmological Model: Dark Energy as Centrifugal Pressure and the Dynamical Spacetime Engine2026
  3. 3The Kerr-Salpeter Cosmological Model: Geometric Unification of the Hubble Tension, JWST Anomalies, and Dark Energy2026
  4. 4The Kerr-Cartan Cosmological Model: Geometric Unification of Cosmological Anomalies2026
  5. 5The Kerr-Salpeter Cosmological Model: Geometric Unification of Cosmological Anomalies2026