Exact charged black hole solutions, static and time-dependent, are built in a class of reverse-engineered Einstein-Maxwell-dilaton theories, with explicit collapse from a smaller to a larger black hole.
Exact Hairy Black Holes
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abstract
This proceeding reviews the recent finding of a certain class of, regular on and outside the horizon, exact hairy black hole solutions in four dimensional general relativity. Their construction follow from the integrability of a cohomogeneity two Weyl rescaling of the Carter-Debever ansatz in the presence of an arbitrary number of scalar fields with an arbitrary self interaction and an arbitrary non-minimal coupling to the scalar curvature. Two field equations, independent of the specific form of the energy momentum tensor, are used to integrate the metric. The remaining ones fix the form of the scalar field self interaction. The cohomogeneity one black holes are described and are shown to encompass all the exact, regular in the domain of outer communications, uncharged, black holes with a minimally coupled scalar hair, available in the literature.
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Static and Dynamic Charged Black Holes
Exact charged black hole solutions, static and time-dependent, are built in a class of reverse-engineered Einstein-Maxwell-dilaton theories, with explicit collapse from a smaller to a larger black hole.