The Glauber model and flow analysis with Pb-Pb collisions at =2.76 TeV
arXiv:2109.12802 · doi:10.1088/1742-6596/2287/1/012029
Abstract
This work presents data analysis on Pb-Pb collisions at =2.76 TeV with centrality . We present introduction and Monte-Carlo simulation results of the Glauber model, which shed light on the initial geometric configuration of heavy ion collisions. Three-dimensional correlation function is plotted, and Fourier decomposition is carried out in order to obtain elliptic flow. Based on the assumption that non-flow effect is less prominent in long-range area, we separate it from the second Fourier decomposition of two-particle correlation function by making polynomial curve fitting.
10 pages,8 figures, revisions are made, accepted by ICAPM 2022 Conference Proceedings
References in corpus (5)
- Viscosity in Strongly Interacting Quantum Field Theories from Black Hole Physics
- Glauber Modeling in High Energy Nuclear Collisions
- Dihadron azimuthal correlations in Au+Au collisions at sqrt(s_NN)=200 GeV
- The PHOBOS Glauber Monte Carlo
- Cluster properties from two-particle angular correlations in p+p collisions at = 200 and 410 GeV