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Article
Report number arXiv:2207.01653 ; UPR-1320-T ; CERN-TH-2022-102 ; MI-HET-779
Title Mode Stability For Massless Scalars In Five-Dimensional Black Hole Backgrounds
Author(s) Cvetic, M. (Pennsylvania U. ; Pennsylvania U., Dept. Math. ; Maribor U. ; CERN) ; Pope, C.N. (Texas A-M ; Cambridge U., DAMTP) ; Whiting, B.F. (Florida U.) ; Zhang, Haoyu (Texas A-M)
Publication 2022-11-14
Imprint 2022-07-04
Number of pages 22
Note 22 pages
In: Phys. Rev. D 106 (2022) 104026
DOI 10.1103/PhysRevD.106.104026 (publication)
Subject category hep-th ; Particle Physics - Theory ; gr-qc ; General Relativity and Cosmology
Abstract The mode stability of the Kerr black hole in four dimensions was demonstrated by Whiting in 1989, by separating the Teukolsky equation that describes gravitational perturbations and then transforming the radial and angular equations in such a way that the problem can be reformulated as a wave equation in an auxiliary spacetime in which the proof of stability is greatly simplified, owing to the absence of an ergoregion. As a preliminary step towards extending these ideas to higher-dimensional black holes, we study the mode stability of the massless scalar wave equation in the five-dimensional black hole solutions of Einstein gravity and supergravity. We show how the wave equation can again be mapped into one in an auxiliary spacetime in which there is no ergoregion, allowing us to give a proof of the mode stability of the solutions of the scalar wave equation.
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 Record creato 2022-07-07, modificato l'ultima volta il 2023-10-04


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