Three-particle correlations in relativistic heavy ion collisions in a multiphase transport model
arXiv:1702.07807 · doi:10.1016/j.physletb.2017.03.068
Abstract
Using a multiphase transport model, we study three-particle mixed harmonic correlations in relativistic heavy ion collisions by considering the observable , where are azimuthal angles of all particle triplets. We find that except for , our results on the centrality dependence of , and as well as the relative pseudorapidity dependence of and in Au+Au collisions at 200 GeV agree reasonable well with the experimental data from the STAR Collaboration. We discuss the implications of our results.
5 pages, 3 figures
References in corpus (7)
- Viscosity in Strongly Interacting Quantum Field Theories from Black Hole Physics
- Viscosity Information from Relativistic Nuclear Collisions: How Perfect is the Fluid Observed at RHIC?
- Elliptic and triangular flow in event-by-event (3+1)D viscous hydrodynamics
- Event-by-event anisotropic flow in heavy-ion collisions from combined Yang-Mills and viscous fluid dynamics
- 200 A GeV Au+Au collisions serve a nearly perfect quark-gluon liquid
- Triangular flow in heavy ion collisions in a multiphase transport model
- Beam Energy Dependence of the Third Harmonic of Azimuthal Correlations in Au+Au Collisions at RHIC
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