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A Riemann-Hilbert approach to rotating attractors

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arxiv 1703.10366 v2 pith:2JL4RFTV submitted 2017-03-30 hep-th math-phmath.MP

classification hep-thmath-phmath.MP
keywords riemann-hilbertrotatingattractorblackexplicitfactorizationgravityhole
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We construct rotating extremal black hole and attractor solutions in gravity theories by solving a Riemann-Hilbert problem associated with the Breitenlohner-Maison linear system. By employing a vectorial Riemann-Hilbert factorization method we explicitly factorize the corresponding monodromy matrices, which have second order poles in the spectral parameter. In the underrotating case we identify elements of the Geroch group which implement Harrison-type transformations which map the attractor geometries to interpolating rotating black hole solutions. The factorization method we use yields an explicit solution to the linear system, from which we do not only obtain the spacetime solution, but also an explicit expression for the master potential encoding the potentials of the infinitely many conserved currents which make this sector of gravity integrable.

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Cited by 1 Pith paper

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  1. Building multi-BTZ black holes through Riemann-Hilbert problem

    hep-th 2025-06 conditional novelty 6.0 of 10

    The paper systematically constructs known multi-BTZ black hole solutions from a flat-space seed via Riemann-Hilbert factorization and SO(4,4) transformations.

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