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      Relativistic viscous hydrodynamics, conformal invariance, and holography

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          Abstract

          We consider second-order viscous hydrodynamics in conformal field theories at finite temperature. We show that conformal invariance imposes powerful constraints on the form of the second-order corrections. By matching to the AdS/CFT calculations of correlators, and to recent results for Bjorken flow obtained by Heller and Janik, we find three (out of five) second-order transport coefficients in the strongly coupled N=4 supersymmetric Yang-Mills theory. We also discuss how these new coefficents can arise within the kinetic theory of weakly coupled conformal plasmas. We point out that the Mueller-Israel-Stewart theory, often used in numerical simulations, does not contain all allowed second-order terms and, frequently, terms required by conformal invariance.

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          Brownian Motion of a Quantum Oscillator

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            On the kinetic theory of rarefied gases

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              Gauge Theory Correlators from Non-Critical String Theory

              We suggest a means of obtaining certain Green's functions in 3+1-dimensional \({\cal N} = 4\) supersymmetric Yang-Mills theory with a large number of colors via non-critical string theory. The non-critical string theory is related to critical string theory in anti-deSitter background. We introduce a boundary of the anti-deSitter space analogous to a cut-off on the Liouville coordinate of the two-dimensional string theory. Correlation functions of operators in the gauge theory are related to the dependence of the supergravity action on the boundary conditions. From the quadratic terms in supergravity we read off the anomalous dimensions. For operators that couple to massless string states it has been established through absorption calculations that the anomalous dimensions vanish, and we rederive this result. The operators that couple to massive string states at level \(n\) acquire anomalous dimensions that grow as \(2\left (n g_{YM} \sqrt {2 N} )^{1/2}\) for large `t Hooft coupling. This is a new prediction about the strong coupling behavior of large \(N\) SYM theory.
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                Author and article information

                Journal
                14 December 2007
                2008-07-15
                Article
                10.1088/1126-6708/2008/04/100
                0712.2451
                8f6b1a66-b9c3-4c65-b61f-6bfde498b3dc

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

                History
                Custom metadata
                BI-TP 2007/29, INT PUB 07-45, SHEP-07-47
                JHEP0804:100,2008
                32 pages, 1 figure; v2: references added; v3: typos corrected
                hep-th hep-ph nucl-th

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