English

Monte Carlo Glauber wounded nucleon model with meson cloud

Nuclear Theory 2017-09-13 v1

Abstract

We study the effect of the nucleon meson cloud on predictions of the Monte Carlo Glauber wounded nucleon model for AAAA, pApA, and pppp collisions. From the analysis of the data on the charged multiplicity density in AAAA collisions we find that the meson-baryon Fock component reduces the required fraction of binary collisions by a factor of 2\sim 2 for Au+Au collisions at s=0.2\sqrt{s}=0.2 TeV and 1.5\sim 1.5 for Pb+Pb collisions at s=2.76\sqrt{s}=2.76 TeV. For central AAAA collisions the meson cloud can increase the multiplicity density by 1618\sim 16-18\%. We give predictions for the midrapidity charged multiplicity density in Pb+Pb collisions at s=5.02\sqrt{s}=5.02 TeV for the future LHC run 2. We find that the meson cloud has a weak effect on the centrality dependence of the ellipticity ϵ2\epsilon_2 in AAAA collisions. For collisions of the deformed uranium nuclei at s=0.2\sqrt{s}=0.2 TeV we find that the meson cloud may improve somewhat agreement with the data on the dependence of the elliptic flow on the charged multiplicity for very small centralities defined via the ZDCs signals. We find that the meson cloud may lead to a noticeable reduction of ϵ2\epsilon_2 and the size of the fireball in pApA and pppp collisions.

Keywords

Cite

@article{arxiv.1611.05825,
  title  = {Monte Carlo Glauber wounded nucleon model with meson cloud},
  author = {B. G. Zakharov},
  journal= {arXiv preprint arXiv:1611.05825},
  year   = {2017}
}

Comments

17 pages, 13 figures

R2 v1 2026-06-22T16:56:10.955Z