Publication | Open Access
Thermalization of Strongly Coupled Field Theories
325
Citations
19
References
2011
Year
EngineeringPhysicsCosmologyEntropyGrowth RateQuantum Field TheoryApplied PhysicsHomogeneous Initial ConditionsNatural SciencesQuantum Field Theory In Curved SpacetimeHolographic MethodThermodynamicsQuantum CosmologyQuantum EntanglementCausality BoundConformal Field TheoryStatistical Field Theory
Using the holographic mapping to a gravity dual, we calculate 2-point functions, Wilson loops, and entanglement entropy in strongly coupled field theories in d=2, 3, and 4 to probe the scale dependence of thermalization following a sudden injection of energy. For homogeneous initial conditions, the entanglement entropy thermalizes slowest and sets a time scale for equilibration that saturates a causality bound. The growth rate of entanglement entropy density is nearly volume-independent for small volumes but slows for larger volumes. In this setting, the UV thermalizes first.
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