Collective flow and correlations measurements with HADES in Au+Au collisions at 1.23 AGeV
arXiv:1809.07821 · doi:10.1016/j.nuclphysa.2018.09.061
Abstract
The HADES experiment provides a large acceptance combined with a high mass resolution and therefore makes it possible to study dielectron and hadron production in heavy-ion collisions with unprecedented precision. With the high statistics of seven billion Au+Au collisions at 1.23 AGeV recorded in 2012 the investigation of collective effects and particle correlations is possible with unprecedented accuracy. We present multi-differential data on directed () and elliptic () flow, and the first measurement of triangular flow (), of protons and deuterons.
4 pages, 3 figures, accepted contribution to the proceedings of Quark Matter 2018
References in corpus (4)
- Centrality determination of Au+Au collisions at 1.23A GeV with HADES
- Determination of the nuclear incompressibility from the rapidity-dependent elliptic flow in heavy-ion collisions at beam energies 0.4\emph{A} - 1.0\emph{A} GeV
- Directed, elliptic and triangular flow of protons in Au+Au reactions at 1.23 AGeV: A theoretical analysis of the recent HADES data
- Collective Flow of QCD Matter: a Historical Introduction
Cited by in corpus (5)
- Hot and dense quark-gluon plasma thermodynamics from holographic black holes
- Theoretical and Experimental Constraints for the Equation of State of Dense and Hot Matter
- First, second, third and fourth flow harmonics of deuterons and protons in Au+Au reactions at 1.23 A GeV
- Signature of intermittency in hybrid UrQMD-hydro data at 10 AGeV Au+Au collisions
- Distinguishing the sources of dielectron anisotropic flow at low beam energies