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Regular black holes from Oppenheimer-Snyder collapse

9 Pith papers cite this work. Polarity classification is still indexing.

9 Pith papers citing it
abstract

It has been recently shown that regular black holes arise as the unique spherically symmetric solutions of broad families of generalizations of Einstein gravity involving infinite towers of higher-curvature corrections in $D\geq 5$ spacetime dimensions. In this paper we argue that such regular black holes arise as the byproduct of the gravitational collapse of pressureless dust stars. We show that, just like for Einstein gravity, the modified junction conditions for these models impose that the dust particles on the star surface follow geodesic trajectories on the corresponding black hole background. Generically, in these models the star collapses until it reaches a minimum size (and a maximum density) inside the inner horizon of the black hole it creates. Then, it bounces back and reappears through a white hole in a different universe, where it eventually reaches its original size and restarts the process. Along the way, we study FLRW cosmologies in the same theories that regularize black hole singularities. We find that the cosmological evolution is completely smooth, with the big bang and big crunch singularities predicted by Einstein gravity replaced by cosmological bounces.

citation-role summary

background 2 method 1

citation-polarity summary

fields

gr-qc 8 hep-th 1

years

2026 8 2025 1

representative citing papers

Regular Black Holes in Nonlocal Quasitopological Gravity

gr-qc · 2026-07-08 · accept · novelty 7.0

Infinite-derivative completions of quasitopological gravities are ghost-free, avoid strong coupling, and admit exact spherically symmetric vacuum regular black holes obeying a perturbative Birkhoff theorem.

Cosmic Inflation From Regular Black Holes

gr-qc · 2026-04-06 · unverdicted · novelty 7.0

Regular black holes in the bulk of quasi-topological gravity drive a de Sitter inflationary phase on the brane at small scales, with e-fold number set by the ratio of black hole radius to higher-curvature scale.

Regular Vaidya solutions of effective gravitational theories

gr-qc · 2025-06-17 · unverdicted · novelty 7.0

Regular Vaidya solutions exist in effective gravitational theories that dynamically describe radiation-driven formation of regular black holes or mimickers without curvature singularities.

Charging up regular black holes

gr-qc · 2026-07-08 · accept · novelty 6.0

Charged Bardeen and Hayward metrics become singular under deformed Einstein–Maxwell equations; more stringent regularity conditions are derived and improved regular charged metrics are constructed.

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Showing 9 of 9 citing papers.