Scaling properties at freeze-out in relativistic heavy-ion collisions

Publication date

2011

Authors

Aggarwal, M.M.
Ahammed, Z.
Braidot, EISNI 0000000388678889
Peitzmann, T.ISNI 0000000396028229
van Leeuwen, M.ORCID 0000-0002-5222-4888ISNI 0000000392034832
Zoulkarneeva, Y.

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Article
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Abstract

Identified charged pion, kaon, and proton spectra are used to explore the system size dependence of bulk freeze-out properties in Cu+Cu collisions at √sNN=200 and 62.4 GeV. The data are studied with hydrodynamically motivated blast-wave and statistical model frameworks in order to characterize the freeze-out properties of the system. The dependence of freeze-out parameters on beam energy and collision centrality is discussed. Using the existing results from Au + Au and pp collisions, the dependence of freeze-out parameters on the system size is also explored. This multidimensional systematic study furthers our understanding of the QCD phase diagram revealing the importance of the initial geometrical overlap of the colliding ions. The analysis of Cu+Cu collisions expands the system size dependence studies from Au+Au data with detailed measurements in the smaller system. The systematic trends of the bulk freeze-out properties of charged particles is studied with respect to the total charged particle multiplicity at midrapidity, exploring the influence of initial state effects.

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Citation

Aggarwal, M M, Ahammed, Z, Braidot, E, Peitzmann, T, van Leeuwen, M & Zoulkarneeva, Y 2011, 'Scaling properties at freeze-out in relativistic heavy-ion collisions', Physical Review. C, Nuclear physics, vol. 83, no. 3, pp. 034910/1-034910/12. https://doi.org/10.1103/PhysRevC.83.034910