arXiv:1012.4753·v3·High Energy Physics — Theory
Thermalization of Strongly Coupled Field Theories
V. Balasubramanian🇺🇸 · A. Bernamonti🇧🇪 · J. de Boer🇳🇱 · N. Copland🇧🇪 · B. Craps🇧🇪 · E. Keski-Vakkuri🇫🇮 · B. Müller🇺🇸 · A. Schäfer🇩🇪 · M. Shigemori🇯🇵 · W. Staessens🇧🇪
Abstract
Using the AdS/CFT correspondence, we probe the scale-dependence of thermalization in strongly coupled field theories following a quench via saddlepoint calculations of 2-point functions, Wilson loops and entanglement entropy in . For homogeneous initial conditions, the entanglement entropy thermalizes slowest, and sets a timescale 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 strongly coupled setting, the UV thermalizes first.
Comments: 4 pages, 4 figures + 1 figure (v2), v2: new results added on entanglement entropy in 4d field theories and on entropy growth rate, v3: published version