English

Back-to-back relative-excess observable in search for the chiral magnetic effect

Nuclear Theory 2020-02-05 v2 Nuclear Experiment

Abstract

Background:\textbf{Background:} The chiral magnetic effect (CME) is extensively studied in heavy-ion collisions at RHIC and LHC. In the commonly used reaction plane (RP) dependent, charge dependent azimuthal correlator (Δγ\Delta\gamma), both the close and back-to-back pairs are included. Many backgrounds contribute to the close pairs (e.g. resonance decays, jet correlations), whereas the back-to-back pairs are relatively free of those backgrounds. Purpose:\textbf{Purpose:} In order to reduce those backgrounds, we propose a new observable which only focuses on the back-to-back pairs, namely, the relative back-to-back opposite-sign (OS) over same-sign (SS) pair excess (rBBr_{\text{BB}}) as a function of the pair azimuthal orientation with respect to the RP (φBB\varphi_{\text{BB}}). Methods:\textbf{Methods:} We use analytical calculations and toy model simulations to demonstrate the sensitivity of rBB(φBB)r_{\text{BB}}(\varphi_{\text{BB}}) to the CME and its insensitivity to backgrounds. Results:\textbf{Results:} With finite CME, the φBB\varphi_{\text{BB}} distribution of rBBr_{\text{BB}} shows a clear characteristic modulation. Its sensitivity to background is significantly reduced compared to the previous Δγ\Delta\gamma observable. The simulation results are consistent with our analytical calculations. Conclusions:\textbf{Conclusions:} Our studies demonstrate that the rBB(φBB)r_{\text{BB}}(\varphi_{\text{BB}}) observable is sensitive to the CME signal and rather insensitive to the resonance backgrounds.

Keywords

Cite

@article{arxiv.1908.10210,
  title  = {Back-to-back relative-excess observable in search for the chiral magnetic effect},
  author = {Yicheng Feng and Jie Zhao and Fuqiang Wang},
  journal= {arXiv preprint arXiv:1908.10210},
  year   = {2020}
}

Comments

6 pages, 4 figures, 1 table