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I review recent progress on the connection between string theory and quantum chromodynamics in the context of the gauge/gravity duality.
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See, for example, Y. Aoki, G. Endrodi, Z. Fodor, S. D. Katz and K. K. Szabo, “The order of the quantum chromodynamics transition predicted by the standard model of particle physics,” Nature 443
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C.P. Herzog, “The hydrodynamics of M-theory,” JHEP 0212
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2003
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E. Shuryak, “Why does the quark gluon plasma at RHIC behave as a nearly ideal fluid?,” Prog. Part. Nucl. Phys. 53
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A. Buchel and J.T. Liu, “Universality of the shear viscosity in supergravity,” Phys. Rev. Lett. 93
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P. Kovtun, D. T. Son and A. O. Starinets, “Viscosity in strongly interacting quantum field theories from black hole physics,” Phys. Rev. Lett. 94
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H. B. Meyer, “A calculation of the shear viscosity in SU(3) gluodynamics,” arXiv:0704.1801 [hep-lat]
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J. Mas, “Shear viscosity from R-charged AdS black holes,” JHEP 0603
2007
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S. C. Huot, S. Jeon and G. D. Moore, “Shear viscosity in weakly coupled N = 4 super Yang-Mills theory compared to QCD,” Phys. Rev. Lett. 98
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D. Mateos, R. C. Myers and R. M. Thomson, “Holographic phase transitions with fundamental matter,” Phys. Rev. Lett. 97
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D. Mateos, R. C. Myers and R. M. Thomson, “Holographic viscosity of fundamental matter,” Phys. Rev. Lett. 98
2007
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