Investigations of strong cosmic censorship in 3-dimensional black strings

Abstract Investigating the quasinormal modes of a massive scalar field on the 3-dimensional black string (3dBS), we study the strong cosmic censorship (SCC) conjecture for the 3dBS in the T-dual relationship with the 3-dimensional rotating anti-de-Sitter (BTZ) black hole. It is shown that even thoug...

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Main Authors: Jeongwon Ho, Wontae Kim, Bum-Hoon Lee
Format: Article
Language:English
Published: SpringerOpen 2022-08-01
Series:Journal of High Energy Physics
Subjects:
Online Access:https://doi.org/10.1007/JHEP08(2022)018
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author Jeongwon Ho
Wontae Kim
Bum-Hoon Lee
author_facet Jeongwon Ho
Wontae Kim
Bum-Hoon Lee
author_sort Jeongwon Ho
collection DOAJ
description Abstract Investigating the quasinormal modes of a massive scalar field on the 3-dimensional black string (3dBS), we study the strong cosmic censorship (SCC) conjecture for the 3dBS in the T-dual relationship with the 3-dimensional rotating anti-de-Sitter (BTZ) black hole. It is shown that even though geometries of the two spacetimes are quite different, such as asymptotically AdS for the BTZ black hole and asymptotically flat for the 3dBS, the BTZ black hole and the 3dBS share similar properties for the SCC. Concretely speaking, the SCC conjecture can be violated even for asymptotically flat spacetime, i.e. the 3dBS. These observations lead us to an assumption that the T-dual transformation preserves spacetime symmetries, at least, which are relevant to the SCC. In addition, we find a new feature of the quasinormal mode at the Cauchy horizon: in the case of in the 3dBS, the spectral gap, α BS at the Cauchy horizon is not determined by the ‘ω-frequency mode’, but the ‘m-frequency mode’.
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spelling doaj.art-34091fdd4b514726aa36086701b229c12022-12-22T04:01:48ZengSpringerOpenJournal of High Energy Physics1029-84792022-08-012022811810.1007/JHEP08(2022)018Investigations of strong cosmic censorship in 3-dimensional black stringsJeongwon Ho0Wontae Kim1Bum-Hoon Lee2Center for Quantum Spacetime, Sogang UniversityCenter for Quantum Spacetime, Sogang UniversityCenter for Quantum Spacetime, Sogang UniversityAbstract Investigating the quasinormal modes of a massive scalar field on the 3-dimensional black string (3dBS), we study the strong cosmic censorship (SCC) conjecture for the 3dBS in the T-dual relationship with the 3-dimensional rotating anti-de-Sitter (BTZ) black hole. It is shown that even though geometries of the two spacetimes are quite different, such as asymptotically AdS for the BTZ black hole and asymptotically flat for the 3dBS, the BTZ black hole and the 3dBS share similar properties for the SCC. Concretely speaking, the SCC conjecture can be violated even for asymptotically flat spacetime, i.e. the 3dBS. These observations lead us to an assumption that the T-dual transformation preserves spacetime symmetries, at least, which are relevant to the SCC. In addition, we find a new feature of the quasinormal mode at the Cauchy horizon: in the case of in the 3dBS, the spectral gap, α BS at the Cauchy horizon is not determined by the ‘ω-frequency mode’, but the ‘m-frequency mode’.https://doi.org/10.1007/JHEP08(2022)018Spacetime SingularitiesBlack HolesBlack Holes in String TheoryString Duality
spellingShingle Jeongwon Ho
Wontae Kim
Bum-Hoon Lee
Investigations of strong cosmic censorship in 3-dimensional black strings
Journal of High Energy Physics
Spacetime Singularities
Black Holes
Black Holes in String Theory
String Duality
title Investigations of strong cosmic censorship in 3-dimensional black strings
title_full Investigations of strong cosmic censorship in 3-dimensional black strings
title_fullStr Investigations of strong cosmic censorship in 3-dimensional black strings
title_full_unstemmed Investigations of strong cosmic censorship in 3-dimensional black strings
title_short Investigations of strong cosmic censorship in 3-dimensional black strings
title_sort investigations of strong cosmic censorship in 3 dimensional black strings
topic Spacetime Singularities
Black Holes
Black Holes in String Theory
String Duality
url https://doi.org/10.1007/JHEP08(2022)018
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AT wontaekim investigationsofstrongcosmiccensorshipin3dimensionalblackstrings
AT bumhoonlee investigationsofstrongcosmiccensorshipin3dimensionalblackstrings