Exact scalar (quasi-)normal modes of black holes and solitons in gauged SUGRA
Monserrat Aguayo, Ankai Hern\'andez, Jos\'e Mena, Julio Oliva, Marcelo, Oyarzo

TL;DR
This paper derives exact scalar (quasi-)normal mode spectra for a family of black holes and solitons in gauged supergravity, revealing isospectrality and stability properties influenced by non-minimal coupling.
Contribution
It provides exact solutions for scalar perturbations in complex supergravity backgrounds with non-minimal coupling, a novel analytical achievement in this field.
Findings
Exact hypergeometric solutions for scalar modes
Isospectrality of black hole geometries
Presence of stable and unstable modes depending on coupling
Abstract
In this paper we identify a new family of black holes and solitons that lead to the exact integration of scalar probes, even in the presence of a non-minimal coupling with the Ricci scalar which has a non-trivial profile. The backgrounds are planar and spherical black holes as well as solitons of gauged supergravity in four dimensions. On these geometries, we compute the spectrum of (quasi-)normal modes for the non-minimally coupled scalar field. We find that the equation for the radial dependence can be integrated in terms of hypergeometric functions leading to an exact expression for the frequencies. The solutions do not asymptote to a constant curvature spacetime, nevertheless the asymptotic region acquires an extra conformal Killing vector. For the black hole, the scalar probe is purely ingoing at the horizon, and…
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