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March 10, 20260 citationsOpen Access

A Unified Framework for Singularity Resolution.

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LMLópez Sánchez Marc

Key Points

  • This paper aims to develop a framework that resolves singularities in high-dimensional gravity scenarios.
  • Derivation using the 5D Einstein-Hilbert action
  • Application of the Shiromizu-Maeda-Sasaki projection method
  • Numerical stability analysis of radion-warp coupling
  • Introduced a feedback mechanism relating the warp factor to local energy density
  • Proposed a 'Curvature Brake' that regulates geodesic divergences
  • Eliminated Big Bang singularities through cosmological bounce
  • Transformed black hole cores into regular de Sitter regions
  • Showed the natural emergence of gauge interactions from excess metric degrees of freedom

Abstract

Analytical derivation based on the 5D Einstein-Hilbert action and the Shiromizu-Maeda-Sasaki projection method. Numerical stability analysis of the radion-warp coupling in high-density regimes. We present a unified synthesis of the CCEGA (Curvature-Controlled Extra-dimensional Gravity Approach) framework. We propose a feedback mechanism in which the warp factor of a five-dimensional geometry depends dynamically on the local energy density. This coupling acts as a 'Curvature Brake' that regulates geodesic divergences, eliminating Big Bang singularities through a cosmological bounce and transforming black hole cores into regular de Sitter regions. We demonstrate that gauge interactions emerge naturally from the excess metric degrees of freedom, providing a consistent path toward geometric unification. Observational signatures in gravitational wave dispersion and high-energy cosmology are discussed.

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Cite This Study

López Sánchez Marc (2026) studied this question.

synapsesocial.com/papers/69af95de70916d39fea4de75https://doi.org/10.5281/zenodo.18906698
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