English

Importance of non-flow background on the chiral magnetic wave search

Nuclear Theory 2021-02-03 v1

Abstract

An observable sensitive to the chiral magnetic wave (CMW) is the charge asymmetry dependence of the π\pi^{-} and π+\pi^{+} anisotropic flow difference, Δvn(Ach)\Delta v_{n}(A_{\rm ch}). We show that, due to non-flow correlations, the flow measurements by the Q-cumulant method using all charged particles as reference introduce a trivial linear term to Δvn(Ach)\Delta v_{n}(A_{\rm ch}). The trivial slope contribution to the triangle flow difference Δv3(Ach)\Delta v_{3}(A_{\rm ch}) can be negative if the non-flow is dominated by back-to-back pairs. This can explain the observed negative Δv3(Ach)\Delta v_{3}(A_{\rm ch}) slope in the preliminary STAR data. We further find that the non-flow correlations give rise to additional backgrounds to the slope of Δv2(Ach)\Delta v_{2}(A_{\rm ch}) from the competition among different pion sources and from the larger multiplicity dilution to π+\pi^{+} (π\pi^{-}) at positive (negative) AchA_{\rm ch}.

Keywords

Cite

@article{arxiv.2002.05220,
  title  = {Importance of non-flow background on the chiral magnetic wave search},
  author = {Hao-jie Xu and Jie Zhao and Yicheng Feng and Fuqiang Wang},
  journal= {arXiv preprint arXiv:2002.05220},
  year   = {2021}
}

Comments

4 pages, 2 figures, contribution to the proceedings of the 28th international conference on ultrarelativistic nucleus-nucleus collisions (Quark Matter 2019)