Boost-invariant early time dynamics from AdS/CFT
Abstract
Boost-invariant dynamics of a strongly-coupled conformal plasma is studied in the regime of early proper-time using the AdS/CFT correspondence. It is shown, in contrast with the late-time expansion, that a scaling solution does not exist. The boundary dynamics in this regime depends on initial conditions encoded in the bulk behavior of a Fefferman-Graham metric coefficient at initial proper-time. The relation between the early-time expansion of the energy density and initial conditions in the bulk of AdS is provided. As a general result it is proven that a singularity of some metric coefficient in Fefferman-Graham frame exists at all times. Requiring that this singularity at tau = 0 is a mere coordinate singularity without the curvature blow-up gives constraints on the possible boundary dynamics. Using a simple Pade resummation for solutions satisfying the regularity constraint, the features of a transition to local equilibrium, and thus to the hydrodynamical late-time regime, have been observed. The impact of this study on the problem of thermalization is discussed.
Keywords
Cite
@article{arxiv.0906.4423,
title = {Boost-invariant early time dynamics from AdS/CFT},
author = {Guillaume Beuf and Michal P. Heller and Romuald A. Janik and Robi Peschanski},
journal= {arXiv preprint arXiv:0906.4423},
year = {2014}
}
Comments
25 pages; ver2: minor typos fixed, literature added, matches the published version