Quantum Black Holes as Holograms in AdS Braneworlds
Abstract
We propose a new approach for using the AdS/CFT correspondence to study quantum black hole physics. The black holes on a brane in an AdS braneworld that solve the classical bulk equations are interpreted as duals of {\it quantum-corrected} -dimensional black holes, rather than classical ones, of a conformal field theory coupled to gravity. We check this explicitly in D=3 and D=4. In D=3 we reinterpret the existing exact solutions on a flat membrane as states of the dual 2+1 CFT. We show that states with a sufficiently large mass really are 2+1 black holes where the quantum corrections dress the classical conical singularity with a horizon and censor it from the outside. On a negatively curved membrane, we reinterpret the classical bulk solutions as quantum-corrected BTZ black holes. In D=4 we argue that the bulk solution for the brane black hole should include a radiation component in order to describe a quantum-corrected black hole in the 3+1 dual. Hawking radiation of the conformal field is then dual to classical gravitational bremsstrahlung in the AdS bulk.
Keywords
Cite
@article{arxiv.hep-th/0206155,
title = {Quantum Black Holes as Holograms in AdS Braneworlds},
author = {Roberto Emparan and Alessandro Fabbri and Nemanja Kaloper},
journal= {arXiv preprint arXiv:hep-th/0206155},
year = {2010}
}
Comments
28 pages, JHEP latex, 1 .eps figure, v2: references and comments added, v3: comments and acknowledgements added to match the published paper