We exploit the recently proposed correspondence between gravitational perturbations and quantum Seiberg-Witten curves to compute the spectrum of quasi-normal modes of asymptotically flat Kerr Newman black holes and establish detailed gauge/gravity dictionaries for a large class of black holes, D-branes and fuzzballs in diverse dimensions. QNM frequencies obtained from the quantum periods of SU(2) N = 2 SYM with N-f = 3 flavours are compared against numerical results, WKB (eikonal) approximation and geodetic motion showing remarkable agreement. Starting from the master example relating quasi-normal modes of Kerr-Newman black holes in AdS(4) to SU(2) gauge theory with N-f = 4, we illustrate the procedure for some simple toy-models that allow analytic solutions. We also argue that the AGT version of the gauge/gravity correspondence may give precious hints as to the physical/geometric origin of the quasi-normal modes/Seiberg-Witten connection and further elucidate interesting properties (such as tidal Love numbers and grey-body factors) that can help discriminating black holes from fuzzballs.

Bianchi, M., Consoli, D., Grillo, A., Morales, J.f. (2022). More on the SW-QNM correspondence. JOURNAL OF HIGH ENERGY PHYSICS(1) [10.1007/JHEP01(2022)024].

More on the SW-QNM correspondence

Bianchi M.;Consoli D.;
2022-01-01

Abstract

We exploit the recently proposed correspondence between gravitational perturbations and quantum Seiberg-Witten curves to compute the spectrum of quasi-normal modes of asymptotically flat Kerr Newman black holes and establish detailed gauge/gravity dictionaries for a large class of black holes, D-branes and fuzzballs in diverse dimensions. QNM frequencies obtained from the quantum periods of SU(2) N = 2 SYM with N-f = 3 flavours are compared against numerical results, WKB (eikonal) approximation and geodetic motion showing remarkable agreement. Starting from the master example relating quasi-normal modes of Kerr-Newman black holes in AdS(4) to SU(2) gauge theory with N-f = 4, we illustrate the procedure for some simple toy-models that allow analytic solutions. We also argue that the AGT version of the gauge/gravity correspondence may give precious hints as to the physical/geometric origin of the quasi-normal modes/Seiberg-Witten connection and further elucidate interesting properties (such as tidal Love numbers and grey-body factors) that can help discriminating black holes from fuzzballs.
2022
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore FIS/02 - FISICA TEORICA, MODELLI E METODI MATEMATICI
English
Black Holes
Black Holes in String Theory
Gauge-gravity correspondence
Supersymmetric Gauge Theory
Bianchi, M., Consoli, D., Grillo, A., Morales, J.f. (2022). More on the SW-QNM correspondence. JOURNAL OF HIGH ENERGY PHYSICS(1) [10.1007/JHEP01(2022)024].
Bianchi, M; Consoli, D; Grillo, A; Morales, Jf
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/289546
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