Revealing long-range multi-particle collectivity in small collision systems via subevent cumulants
Abstract
Multi-particle azimuthal cumulants, often used to study collective flow in high-energy heavy-ion collisions, have recently been applied in small collision systems such as and +A to extract the second-order azimuthal harmonic flow . Recent observation of four-, six- and eight-particle cumulants with "correct sign" and approximate equality of the inferred single-particle harmonic flow, , have been used as strong evidence for a collective emission of all soft particles produced in the collisions. We show that these relations in principle could be violated due to the non-Gaussianity in the event-by-event fluctuation of flow and/or non-flow. Furthermore, we show, using events generated with the PYTHIA model, that obtained with standard cumulant method are dominated by non-flow from dijets. An alternative cumulant method based on two or more -separated subevents is proposed to suppress the dijet contribution. The new method is shown to be able to recover a flow signal as low as 4\% imposed on the PYTHIA events, independently of how the event activity class is defined. Therefore the subevent cumulant method offers a more robust way of studying collectivity based on the existence of long-range azimuthal correlations between multiple distinct ranges. The prospect of using the subevent cumulants to study collective flow in A+A collisions, in particular its longitudinal dynamics, is discussed.
Keywords
Cite
@article{arxiv.1701.03830,
title = {Revealing long-range multi-particle collectivity in small collision systems via subevent cumulants},
author = {Jiangyong Jia and Mingliang Zhou and Adam Trzupek},
journal= {arXiv preprint arXiv:1701.03830},
year = {2017}
}
Comments
23 pages, 10 figures, replace with the published version