Linear stability of Mandal-Sengupta-Wadia black holes
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Publisher
World Scientific Publ Co Pte Ltd
Access Rights
info:eu-repo/semantics/closedAccess
Abstract
In this paper, the linear stability of static Mandal-Sengupta-Wadia (MSW) black holes in (2 + 1)-dimensional gravity against circularly symmetric perturbations is studied. Our analysis only applies to non-extremal configurations, thus leaving out the case of the extremal (2 + 1) MSW solution. The associated fields are assumed to have small perturbations in these static backgrounds. We then consider the dilaton equation and specific components of the linearized Einstein equations. The resulting effective Klein-Gordon equation is reduced to the Schrodinger-like wave equation with the associated effective potential. Finally, it is shown that MSW black holes are stable against the small time-dependent perturbations.
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Keywords
Linear stability, dilaton, MSW black hole, perturbation, Klein-Gordon equation
Journal or Series
Modern Physics Letters A
WoS Q Value
Scopus Q Value
Volume
34
Issue
12










