Universality of the hydrodynamic limit in AdS/CFT and the membrane paradigm
arXiv:0809.3808 · doi:10.1103/PhysRevD.79.025023
Abstract
We show that at the level of linear response the low frequency limit of a strongly coupled field theory at finite temperature is determined by the horizon geometry of its gravity dual, i.e. by the "membrane paradigm" fluid of classical black hole mechanics. Thus generic boundary theory transport coefficients can be expressed in terms of geometric quantities evaluated at the horizon. When applied to the stress tensor this gives a simple, general proof of the universality of the shear viscosity in terms of the universality of gravitational couplings, and when applied to a conserved current it gives a new general formula for the conductivity. Away from the low frequency limit the behavior of the boundary theory fluid is no longer fully captured by the horizon fluid even within the derivative expansion; instead we find a nontrivial evolution from the horizon to the boundary. We derive flow equations governing this evolution and apply them to the simple examples of charge and momentum diffusion.
15 pages; added references, minor clarifications in text
References in corpus (9)
- Viscosity in Strongly Interacting Quantum Field Theories from Black Hole Physics
- Minkowski-space correlators in AdS/CFT correspondence: recipe and applications
- Viscosity, Black Holes, and Quantum Field Theory
- Viscosity Bound and Causality Violation
- Schwinger-Keldysh Propagators from AdS/CFT Correspondence
- Quantum critical transport, duality, and M-theory
- Bulk viscosity of gauge theory plasma at strong coupling
- Momentum fluctuations of heavy quarks in the gauge-string duality
- The shear viscosity of the non-commutative plasma
Cited by in corpus (19)
- Beyond eta/s = 1/4pi
- Real-time response in AdS/CFT with application to spinors
- Shear Viscosity from Effective Couplings of Gravitons
- Shear Viscosity from Gauss-Bonnet Gravity with a Dilaton Coupling
- The Incompressible Navier-Stokes Equations From Black Hole Membrane Dynamics
- 1/N Effects in Non-Relativistic Gauge-Gravity Duality
- Gravitational quasinormal modes of AdS black branes in d spacetime dimensions
- Higher Derivative Corrections to Shear Viscosity from Graviton's Effective Coupling
- Shear Viscosity to Entropy Density Ratio in Six Derivative Gravity
- Non-relativistic metrics with extremal limits
- Sound Mode Hydrodynamics from Bulk Scalar Fields
- Exploring colourful holographic superconductors
- The shear diffusion coefficient for generalized theories of gravity
- Second order hydrodynamics for a special class of gravity duals
- R^2 Corrections to Asymptotically Lifshitz Spacetimes
- Non-relativistic D3-brane in the presence of higher derivative corrections
- Universal relations of transport coefficients from holography
- The sound damping constant for generalized theories of gravity
- On the Einstein Relation in holographic systems at finite baryon density