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We find the three-dimensional gravity dual of a process in which two clouds of (1+1)-dimensional conformal matter moving in opposite directions collide.
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R. A. Janik, “Viscous plasma evolution from gravity using AdS/CFT,” Phys. Rev. Lett. 98
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M. P. Heller and R. A. Janik, “Viscous hydrodynamics relaxation time from AdS/CFT,” Phys. Rev. D 76
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K. Kajantie and T. Tahkokallio, “Spherically expanding matter in AdS/CFT,” Phys. Rev. D 75
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2007
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V. Balasubramanian, A. Naqvi and J. Simon, “A multi-boundary AdS orbifold and DLCQ holography: A universal holographic description of extremal black hole horizons,” JHEP 0408
2004
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R. A. Janik and R. Peschanski, “Asymptotic perfect fluid dynamics as a consequence of AdS/CFT,” Phys. Rev. D 73
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R. A. Janik and R. Peschanski, “Gauge / gravity duality and thermalization of a boost-invariant perfect fluid,” Phys. Rev. D 74
2006
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S. Nakamura and S. J. Sin, “A holographic dual of hydrodynamics,” JHEP 0609
2006
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S. J. Sin, S. Nakamura and S. P. Kim, “Elliptic flow, Kasner universe and holographic dual of RHIC fireball,” JHEP 0612
2006
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See, for example, T. Lappi and L. McLerran, “Some features of the glasma,” Nucl. Phys. A 772
2006
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S. Lin and E. Shuryak, “Toward the AdS/CFT gravity dual for High Energy Collisions: I.Falling into the AdS,” arXiv:hep-ph/0610168v2
Cited in the paper.
2007
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E. Shuryak, S. J. Sin and I. Zahed, “A gravity dual of RHIC collisions,” J. Korean Phys. Soc. 50
2007
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N. Kaloper and J. Terning, “How black holes form in high energy collisions,” Gen. Rel. Grav. 39
2007
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2007
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