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Weak Cosmic Censorship: As Strong as Ever

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abstract

Spacetime singularities that arise in gravitational collapse are always hidden inside of black holes. This is the essence of the weak cosmic censorship conjecture. The hypothesis, put forward by Penrose 40 years ago, is still one of the most important open questions in general relativity. In this Letter, we reanalyze extreme situations which have been considered as counterexamples to the weak cosmic censorship conjecture. In particular, we consider the absorption of scalar particles with large angular momentum by a black hole. Ignoring back reaction effects may lead one to conclude that the incident wave may overspin the black hole, thereby exposing its inner singularity to distant observers. However, we show that when back reaction effects are properly taken into account, the stability of the black-hole event horizon is irrefutable. We therefore conclude that cosmic censorship is actually respected in this type of gedanken experiments.

fields

hep-th 1

years

2025 1

verdicts

UNVERDICTED 1

representative citing papers

Violating Weak Cosmic Censorship in AdS$_3$ via Gedanken Experiment

hep-th · 2025-08-07 · unverdicted · novelty 5.0

Under the test-particle approximation, an extremal quantum-corrected BTZ black hole can have its horizon destroyed by a particle with large angular momentum, giving a potential counterexample to weak cosmic censorship.

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  • Violating Weak Cosmic Censorship in AdS$_3$ via Gedanken Experiment hep-th · 2025-08-07 · unverdicted · none · ref 22 · internal anchor

    Under the test-particle approximation, an extremal quantum-corrected BTZ black hole can have its horizon destroyed by a particle with large angular momentum, giving a potential counterexample to weak cosmic censorship.