4.2 Article

Bridging the gap between event-by-event fluctuation measurements and theory predictions in relativistic nuclear collisions

Journal

NUCLEAR PHYSICS A
Volume 960, Issue -, Pages 114-130

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.nuclphysa.2017.01.011

Keywords

Quark-gluon plasma; Fluctuations; Conservation laws

Funding

  1. DFG Collaborative Research Centre [SFB 1225]

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We develop methods to deal with non-dynamical contributions to event-by-event fluctuation measurements of net-particle numbers in relativistic nuclear collisions. These contributions arise from impact parameter fluctuations and from the requirement of overall net-baryon number or net-charge conservation and may mask the dynamical fluctuations of interest, such as those due to critical endpoints in the QCD phase diagram. Within a model of independent particle sources we derive formulae for net-particle fluctuations and develop a rigorous approach to take into account contributions from participant fluctuations in realistic experimental environments and at any cumulant order. Interestingly, contributions from participant fluctuations to the second and third cumulants of net-baryon distributions are found to vanish at mid-rapidity for LHC energies while higher cumulants of even order are non-zero even when the net-baryon number at mid-rapidity is zero, At lower beam energies the effect of participant fluctuations increases and induces spurious higher moments. The necessary corrections become large and need to be carefully taken into account before comparison to theory. We also provide a procedure for selecting the optimal phase space coverage of particles for fluctuation analyses and discuss quantitatively the necessary correction due to global charge conservation. (C) 2017 Elsevier B.V. All rights reserved.

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