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arXiv:2112.03397·v2·Nuclear Theory

Higher-order transverse momentum fluctuations in heavy-ion collisions

Somadutta Bhatta🇺🇸 · Chunjian Zhang🇺🇸 · Jiangyong Jia🇺🇸

Abstract

In relativistic heavy-ion collisions, the event-by-event mean transverse momentum fluctuations are sensitive to overlap area and energy density fluctuations in initial state. We present a framework to calculate fluctuations up to -order using standard and subevent methods, which is validated using the HIJING model. We observe a power-law dependence for cumulants of all orders as a function of charged particle multiplicity , consistent with a simple independent source picture. The fluctuation in collisions is observed to be larger than for Pb, Pb+Pb and Xe+Xe collisions at the same due to bias in number of contributing sources. The short-range correlations are greatly suppressed in subevent method in comparison to calculations based on the standard method. This study provides a baseline for transverse momentum fluctuations without the presence of final state effects.

Comments: 5 pages, 4 figures, replace with published version

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