Near Horizon Analysis of Extremal AdS5 Black Holes
arXiv:0802.3330 · doi:10.1088/1126-6708/2008/05/002
Abstract
We study the near horizon geometry of extremal black holes in five dimensional gauged supergravity using Sen's entropy function formalism. Special attention is paid to the large black hole limit where the near horizon solution exhibits a universal dependence on the rotation. The physical properties of the large black hole solution are shown to agree with predictions from fluid mechanical description of the dual conformal field theory.
26 pages, 1 figure; v2. clarifications and references added
References in corpus (23)
- Nonlinear Fluid Dynamics from Gravity
- Viscosity, Black Holes, and Quantum Field Theory
- Near-horizon symmetries of extremal black holes
- Dimer models and toric diagrams
- Supersymmetric multi-charge AdS_5 black holes
- Entropy Current in Conformal Hydrodynamics
- Viscosity of gauge theory plasma with a chemical potential from AdS/CFT correspondence
- Non-supersymmetric Meta-Stable vacua in SU(N) SQCD with adjoint matter
- Entropy function and attractors for AdS black holes
- Rotating Black Holes in Gauged Supergravities; Thermodynamics, Supersymmetric Limits, Topological Solitons and Time Machines
- Stationary black holes and attractor mechanism
- Near-horizon geometries of supersymmetric AdS(5) black holes
- One entropy function to rule them all
- Moduli flow and non-supersymmetric AdS attractors
- Thermodynamics at the BPS bound for Black Holes in AdS
- Comments on Anomalies and Charges of Toric-Quiver Duals
- Entropy Function for Non-Extremal Black Holes in String Theory
- Comments on Charges and Near-Horizon Data of Black Rings
- A note on causal hydrodynamics for M-theory branes
- The magnetohydrodynamics model of twin kilohertz QPOs in LMXBs
- Euclidean analysis of the entropy functional formalism
- Charges from Attractors
- On Uniqueness of supersymmetric Black holes in AdS(5)