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Kerr Black Holes From Massive Higher-Spin Gauge Symmetry

Authors :
Cangemi, Lucile
Chiodaroli, Marco
Johansson, Henrik
Ochirov, Alexander
Pichini, Paolo
Skvortsov, Evgeny
Publication Year :
2022

Abstract

We propose that the dynamics of Kerr black holes is strongly constrained by the principle of gauge symmetry. We initiate the construction of EFTs for Kerr black holes of any integer quantum spin s using Stueckelberg fields, and show that the known three-point Kerr amplitudes are uniquely predicted using massive higher-spin gauge symmetry. This symmetry is argued to be connected to an enhanced range of validity for the Kerr EFTs. We consider the closely related root-Kerr electromagnetic solution in parallel, for which the dynamical interactions with photons are also constrained by massive higher-spin gauge symmetry. Finally, the spin-s Compton amplitudes are analyzed, and we discuss contact-term constraints at s=2 from Ward identities.<br />Comment: 6 pages, v2: published version

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2212.06120
Document Type :
Working Paper