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Transparency, Mixing and Reflection of Initial Flows in Relativistic Nuclear Collisions

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arxiv hep-ph/0511058 v5 pith:SGS2ROYV submitted 2005-11-06 hep-ph

classification hep-ph
keywords flowsinitialcollisionsfluctuationsmixingevolutionhadronmethod
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We propose to use the hadron number fluctuations in the limited momentum regions to study the evolution of initial flows in high energy nuclear collisions. In this method by a proper preparation of a collision sample the projectile and target initial flows are marked in fluctuations in the number of colliding nucleons. We discuss three limiting cases of the evolution of flows, transparency, mixing and reflection, and present for them quantitative predictions obtained within several models. Finally, we apply the method to the NA49 results on fluctuations of the negatively charged hadron multiplicity in Pb+Pb interactions at 158A GeV and conclude that the data favor a hydrodynamical model with a significant degree of mixing of the initial flows at the early stage of collisions.

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Cited by 1 Pith paper

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  1. Multiplicity fluctuations in the Glauber Monte Carlo approach

    hep-ph 2019-09 conditional novelty 5.0 of 10

    Wounded quark sources with shadowing in a Glauber Monte Carlo model reproduce the centrality dependence of multiplicity fluctuations measured by NA49 in Pb+Pb collisions for 80 to 200 projectile participants.

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