English

Strongly Intensive Measures for Particle Number Fluctuations: Effects of Hadronic Resonances

Nuclear Theory 2015-05-19 v2

Abstract

Strongly intensive measures Δ\Delta and Σ\Sigma are used to study event-by-event fluctuations of hadron multiplicities in nucleus-nucleus collisions. The effects of resonance decays are investigated within statistical model and relativistic transport model. Two specific examples are considered: resonance decays to two positively charged particles (e.g., Δ++p+π+\Delta^{++}\rightarrow p+ \pi^+) and to π+π\pi^+\pi^--pairs. (e.g., ρ0π+π+\rho^0\rightarrow \pi^-+\pi^+). It is shown that resonance abundances at the chemical freeze-out can be estimated by measuring the fluctuations of the number of stable hadrons. These model results are compared to the full hadron-resonance gas analysis within both the grand canonical and canonical ensemble. The ultra-relativistic quantum molecular dynamics (UrQMD) model of nucleus-nucleus collisions is used to illustrate the role of global charge conservation, centrality selection, and limited experimental acceptance.

Keywords

Cite

@article{arxiv.1409.3023,
  title  = {Strongly Intensive Measures for Particle Number Fluctuations: Effects of Hadronic Resonances},
  author = {Viktor V. Begun and Mark I. Gorenstein and Katarzyna Grebieszkow},
  journal= {arXiv preprint arXiv:1409.3023},
  year   = {2015}
}

Comments

expanded discussions; added references; version published in J. Phys. G