arXiv:1307.7086·v2·High Energy Physics — Theory
Inhomogeneous holographic thermalization
V. Balasubramanian🇺🇸 · A. Bernamonti🇧🇪 · J. de Boer🇳🇱 · B. Craps🇧🇪 · L. Franti🇫🇮 · F. Galli🇧🇪 · E. Keski-Vakkuri🇫🇮 · B. Müller🇺🇸 · A. Schäfer🇩🇪
Abstract
The sudden injection of energy in a strongly coupled conformal field theory and its subsequent thermalization can be holographically modeled by a shell falling into anti-de Sitter space and forming a black brane. For a homogeneous shell, Bhattacharyya and Minwalla were able to study this process analytically using a weak field approximation. Motivated by event-by-event fluctuations in heavy ion collisions, we include inhomogeneities in this model, obtaining analytic results in a long wavelength expansion. In the early-time window in which our approximations can be trusted, the resulting evolution matches well with that of a simple free streaming model. Near the end of this time window, we find that the stress tensor approaches that of second-order viscous hydrodynamics. We comment on possible lessons for heavy ion phenomenology.
Comments: 53 pages, 10 figures; v2: references added