Super-Entropic Black Holes and the Kerr-CFT Correspondence
Abstract
We demonstrate that Kerr-CFT duality can be extended to super-entropic black holes, which have non-compact horizons with finite area. We demonstrate that this duality is robust insofar as the ultra-spinning limit of a Kerr-AdS black hole (which yields the super-entropic class)commutes with the near-horizon limit (which yields the Kerr-CFT duality). Consequently the Bekeinstein-Hawking and the CFT entropies are equivalent. We show that the duality holds for both singly-spinning super-entropic black holes in 4 dimensions and for doubly-spinning super-entropic black holes of gauged supergravity in 5 dimensions. In both cases we obtain not only the expected left/right temperatures, but also temperatures associated with electric charge and with a new thermodynamic parameter specific to super-entropic black holes.
Keywords
Cite
@article{arxiv.1512.07597,
title = {Super-Entropic Black Holes and the Kerr-CFT Correspondence},
author = {Musema Sinamuli and Robert B. Mann},
journal= {arXiv preprint arXiv:1512.07597},
year = {2016}
}
Comments
10 pages and 1 figure