Preprint reveals a model to avoid infinite spacetime curvature in black holes, suggesting implications for gravity and cosmology.
This preprint presents the Finite Curvature Transition Hypothesis (FCTH), a speculative phenomenological model for avoiding infinite spacetime curvature inside black holes. In classical General Relativity, the curvature associated with a Schwarzschild black hole increases without bound as the radial coordinate approaches zero. This paper explores the possibility that physical spacetime may instead possess a maximum attainable curvature, Kmax, beyond which the classical description of smooth spacetime is replaced by a different high-curvature regime. A bounded toy model is introduced to illustrate how ordinary General Relativity can be recovered at low curvature while preventing the curvature from diverging to infinity. The paper also discusses possible implications for black-hole singularities, geodesic completeness, quantum gravity, black-hole evaporation, gravitational waves, and early-universe cosmology. The proposed model is not presented as a proven theory or a complete theory of quantum gravity. Its purpose is to develop a testable theoretical framework and identify the mathematical and observational work needed to determine whether a limiting-curvature description of spacetime could be physically realistic.
No takes yet. Share an insight, caveat, or question.
Paarush Anand (2026) studied this question.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: