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We present an attempt to closely mimic the initial stage of heavy ion collisions within holography, assuming a decoupling of longitudinal and transverse dynamics in the very early stage.
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W. van der Schee, Ph.D. thesis, Utrecht University (2014), eprint 1407.1849
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R. D. de Souza, T. Koide, and T. Kodama (2015), eprint 1506.03863
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P. M. Chesler and L. G. Yaffe (2015), eprint 1501.04644
2015
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W. van der Schee, P. Romatschke, and S. Pratt, Phys.Rev.Lett. 111
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P. M. Chesler (2015), eprint 1506.02209
2015
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P. M. Chesler, N. Kilbertus, and W. van der Schee (2015), eprint 1507.02548
2015
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Recently this has been computed more precisely in Chesler et al. 2015 , where it turned out that this observation is slightly modified close to the light cone, causing some small changes at high rapidities. At the level of this initial study this difference is however not significant. This study also computed the normalized d N / d y dN/dy spectrum for central collisions, which qualitatively agrees with Fig. 2
2015
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P. M. Chesler and W. van der Schee (2015), eprint 1501.04952
2015
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This is related to the holographic finding that all energy and also all baryon charge initially ends up in the plasma at relatively small rapidity Casalderrey-Solana et al. 2015
2015
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J. Casalderrey-Solana, D. Mateos, W. van der Schee, and M. Triana (2015)
2015
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