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Black hole attractors and U(1) Fayet-Iliopoulos gaugings: analysis and classification

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arxiv 2112.04962 v2 pith:427QQISU submitted 2021-12-09 hep-th

classification hep-th
keywords blackholeextremalfayet-iliopoulosgaugingsgeometryholeshyperbolic
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We classify the critical points of the effective black hole potential which governs the attractor mechanism taking place at the horizon of static dyonic extremal black holes in $\mathcal{N}=2$, $D=4$ Maxwell-Einstein supergravity with $U(1)$ Fayet-Iliopoulos gaugings. We use a manifestly symplectic covariant formalism, and we consider both spherical and hyperbolic horizons, recognizing the relevant sub-classes to which some representative examples belong. We also exploit projective special K\"{a}hler geometry of vector multiplets scalar manifolds, the $U$-duality-invariant quartic structure (and 2-polarizations thereof) in order to retrieve and generalize various expressions of the entropy of asymptotically AdS$_{4}$ BPS black holes, in the cases in which the scalar manifolds are symmetric spaces. Finally, we present a novel static extremal black hole solution to the $STU$ model, in which the dilaton interpolates between an hyperbolic near-horizon geometry and AdS$_{4}$ at infinity.

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    hep-th 2024-11 conditional novelty 5.0 of 10

    Four-charge planar electric AdS black holes in STU supergravity have negative energy-Hessian determinant below a finite critical temperature; with a BPS-shifted energy, supersymmetric magnetic black holes become metastable.

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