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Flow equations and attractors for black holes in N = 2 U(1) gauged supergravity
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We investigate the existence of supersymmetric static dyonic black holes with spherical horizon in the context of N= 2 U(1) gauged supergravity in four dimensions. We analyze the conditions for their existence and provide the general first-order flow equations driving the scalar fields and the metric warp factors from the asymptotic AdS4 geometry to the horizon. We work in a general duality-symmetric setup, which allows to describe both electric and magnetic gaugings. We also discuss the attractor mechanism and the issue of moduli (de-)stabilization.
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Cited by 1 Pith paper
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The Instability of Low-Temperature Black Holes in Gauged $\mathcal{N}=8$ Supergravity
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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