paper

Microscopic origin of the Bekenstein-Hawking entropy of supersymmetric AdS black holes

arXiv:1810.11442 · doi:10.1007/JHEP10(2019)062

Abstract

We present a holographic derivation of the entropy of supersymmetric asymptotically AdS black holes. We define a BPS limit of black hole thermodynamics by first focussing on a supersymmetric family of complexified solutions and then reaching extremality. We show that in this limit the black hole entropy is the Legendre transform of the on-shell gravitational action with respect to three chemical potentials subject to a constraint. This constraint follows from supersymmetry and regularity in the Euclidean bulk geometry. Further, we calculate, using localization, the exact partition function of the dual SCFT on a twisted with complexified chemical potentials obeying this constraint. This defines a generalization of the supersymmetric Casimir energy, whose Legendre transform at large exactly reproduces the Bekenstein-Hawking entropy of the black hole.

v4: minor changes, version published in JHEP