paper

AdS Black-Hole Entropy and 5D Yang-Mills

arXiv:1907.02923 · doi:10.1007/JHEP01(2020)017

Abstract

We generalise the work of 1810.11442 for the case of AdS/CFT. Starting from the 2-equivalent charge, 3-equivalent rotation non-extremal black-hole solution in 7D gauged supergravity, we consider the supersymmetric and then the extremal limit and evaluate the associated thermodynamic quantities. Away from extremality, the black-hole solution becomes complex. The entropy is then given by the Legendre transform of the on-shell action with respect to two complex chemical potentials subject to a constraint. At the conformal boundary we derive the dual background and evaluate the corresponding partition function for the 6D (2,0) theory at large in a Cardy-like limit. This is carried out via a 5D super Yang-Mills calculation on . The gravitational on-shell action is found to be exactly reproduced by the boundary partition function at large . We argue that this agreement puts strong constraints on the form of possible higher-derivative corrections to the 5D gauge theory that is used in the evaluation.

35 pages; v2 field-theory discussion modified, appendix added and typos corrected; v3 published version