Thermalization from gauge/gravity duality: Evolution of singularities in unequal time correlators
arXiv:1205.6873 · doi:10.1007/JHEP10(2012)028
Abstract
We consider a gauge/gravity dual model of thermalization which consists of a collapsing thin matter shell in asymptotically Anti-de Sitter space. A central aspect of our model is to consider a shell moving at finite velocity as determined by its equation of motion, rather than a quasi-static approximation as considered previously in the literature. By applying a divergence matching method, we obtain the evolution of singularities in the retarded unequal time correlator , which probes different stages of the thermalization. We find that the number of singularities decreases from a finite number to zero as the gauge theory thermalizes. This may be interpreted as a sign of decoherence. Moreover, in a second part of the paper, we show explicitly that the thermal correlator is characterized by the existence of singularities in the complex time plane. By studying a quasi-static state, we show the singularities at real times originate from contributions of normal modes. We also investigate the possibility of obtaining complex singularities from contributions of quasi-normal modes.
35 pages, 4 figures
References in corpus (15)
- Horizon formation and far-from-equilibrium isotropization in supersymmetric Yang-Mills plasma
- Holography and colliding gravitational shock waves in asymptotically AdS_5 spacetime
- Thermalization of Strongly Coupled Field Theories
- Holographic Evolution of Entanglement Entropy
- Evolution of Holographic Entanglement Entropy after Thermal and Electromagnetic Quenches
- Weak Field Black Hole Formation in Asymptotically AdS Spacetimes
- A numerical relativity approach to the initial value problem in asymptotically Anti-de Sitter spacetime for plasma thermalization - an ADM formulation
- Thermalization with a chemical potential from AdS spaces
- Degenerate Stars and Gravitational Collapse in AdS/CFT
- Measuring Black Hole Formations by Entanglement Entropy via Coarse-Graining
- Instantaneous Thermalization in Holographic Plasmas
- Holographic dilepton production in a thermalizing plasma
- AdS black holes as reflecting cavities
- A moving mirror in AdS space as a toy model for holographic thermalization
- Long-Range Rapidity Correlations in Heavy Ion Collisions at Strong Coupling from AdS/CFT
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