English

Predictions for isobaric collisions at $\sqrt{s_{_{\rm NN}}}$ = 200 GeV from a multiphase transport model

Nuclear Theory 2018-04-05 v2 High Energy Physics - Phenomenology Nuclear Experiment

Abstract

The isobaric collisions of 4496^{96}_{44}Ru + 4496^{96}_{44}Ru and 4096^{96}_{40}Zr + 4096^{96}_{40}Zr have recently been proposed to discern the charge separation signal of the chiral magnetic effect (CME). In this article, we employ the string melting version of a multiphase transport model to predict various charged-particle observables, including dN/dηdN/d\eta, pTp_T spectra, elliptic flow (v2v_2), and particularly possible CME signals in Ru + Ru and Zr + Zr collisions at sNN\sqrt{s_{_{\rm NN}}} = 200 GeV. Two sets of the nuclear structure parametrization have been explored, and the difference between the two isobaric collisions appears to be small, in terms of dN/dηdN/d\eta, pTp_T spectra, and v2v_2 for charged particles. We mimic the CME by introducing an initial charge separation that is proportional to the magnetic field produced in the collision, and study how the final-state interactions affect the CME observables. The relative difference in the CME signal between the two isobaric collisions is found to be robust, insensitive to the final-state interactions.

Keywords

Cite

@article{arxiv.1802.02292,
  title  = {Predictions for isobaric collisions at $\sqrt{s_{_{\rm NN}}}$ = 200 GeV from a multiphase transport model},
  author = {Wei-Tian Deng and Xu-Guang Huang and Guo-Liang Ma and Gang Wang},
  journal= {arXiv preprint arXiv:1802.02292},
  year   = {2018}
}

Comments

8 pages, 10 figures; final published version