Topological stars, or top stars for brevity, are smooth horizonless static solutions of Einstein-Maxwell theory in 5-d that reduce to spherically symmetric solutions of Einstein-Maxwell-Dilaton theory in 4-d. We study linear scalar perturbations of top stars and argue for their stability and deformability. We tackle the problem with different techniques including WKB approximation, numerical analysis, Breit-Wigner resonance method and quantum Seiberg-Witten curves. We identify three classes of quasi-normal modes corresponding to prompt-ring down modes, long-lived meta-stable modes and what we dub 'highly-damped' modes. All mode frequencies we find have negative imaginary parts, thus suggesting linear stability of top stars. Moreover we determine the tidal Love and dissipation numbers encoding the response to tidal deformations and, similarly to black holes, we find zero value in the static limit but, contrary to black holes, we find non-trivial dynamical Love numbers and vanishing dissipative effects at linear order. For the sake of illustration in a simpler context, we also consider a toy model with a piece-wise constant potential and a centrifugal barrier that captures most of the above features in a qualitative fashion.

Bianchi, M., Di Russo, G., Grillo, A., Morales, J.f., Sudano, G. (2023). On the stability and deformability of top stars. JOURNAL OF HIGH ENERGY PHYSICS, 2023(12) [10.1007/JHEP12(2023)121].

On the stability and deformability of top stars

Bianchi M.
Membro del Collaboration Group
;
Di Russo G.
;
Grillo A.
Membro del Collaboration Group
;
Sudano G.
2023-01-01

Abstract

Topological stars, or top stars for brevity, are smooth horizonless static solutions of Einstein-Maxwell theory in 5-d that reduce to spherically symmetric solutions of Einstein-Maxwell-Dilaton theory in 4-d. We study linear scalar perturbations of top stars and argue for their stability and deformability. We tackle the problem with different techniques including WKB approximation, numerical analysis, Breit-Wigner resonance method and quantum Seiberg-Witten curves. We identify three classes of quasi-normal modes corresponding to prompt-ring down modes, long-lived meta-stable modes and what we dub 'highly-damped' modes. All mode frequencies we find have negative imaginary parts, thus suggesting linear stability of top stars. Moreover we determine the tidal Love and dissipation numbers encoding the response to tidal deformations and, similarly to black holes, we find zero value in the static limit but, contrary to black holes, we find non-trivial dynamical Love numbers and vanishing dissipative effects at linear order. For the sake of illustration in a simpler context, we also consider a toy model with a piece-wise constant potential and a centrifugal barrier that captures most of the above features in a qualitative fashion.
2023
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore FIS/02
English
Con Impact Factor ISI
Black Holes
Black Holes in String Theory
Gauge-Gravity Correspondence
Bianchi, M., Di Russo, G., Grillo, A., Morales, J.f., Sudano, G. (2023). On the stability and deformability of top stars. JOURNAL OF HIGH ENERGY PHYSICS, 2023(12) [10.1007/JHEP12(2023)121].
Bianchi, M; Di Russo, G; Grillo, A; Morales, Jf; Sudano, G
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/361551
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