4.5 Article

Weak cosmic censorship conjecture for the (2+1)-dimensional charged BTZ black hole in the Einstein-Gauss-Bonnet Gravity

期刊

PHYSICS OF THE DARK UNIVERSE
卷 37, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.dark.2022.101082

关键词

BTZ black hole; EGB gravity; Charged scalar field; WCCC

资金

  1. Uzbekistan Ministry for Innovative Development [F -FA -2021-432, MRB-2021-527]
  2. Abdus Salam International Centre [OEA-NT-01]

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The study explores the properties of (2+1)-dimensional charged black holes in EGB theory, revealing that both extremal and nearly-extremal states can be overcharged, leading to a violation of the weak cosmic censorship conjecture.
It is well known that (2 + 1) dimensional charged BTZ (Banados, Teitelboim, Zanelli) black hole can be overcharged by a charged scalar field and a charged particle in contrast to their analogues in (3 + 1) and higher dimensions. In this regard, it may play an important role to understand more deeply the properties of the (2 + 1)-dimensional charged black hole in the Einstein-Gauss-Bonnet (EGB) gravity. In this paper, we test the validity of the weak cosmic censorship conjecture for the (2+1)-dimensional charged black hole in novel EGB theory derived recently by Henniger et al. (2021). We show that the minimum energy that particle can have at the horizon becomes negative for both an extremal and nearly-extremal BTZ black holes in EGB gravity. It is proven that both extremal and nearly-extremal (2 + 1) dimensional BTZ black hole could be overcharged in EGB theory, leading to the violation of the weak cosmic censorship conjecture (WCCC), which is in good agreement with the results obtained for the classical BTZ black hole. (c) 2022 Elsevier B.V. All rights reserved.

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