Hydrodynamic Overview at Hot Quarks 2016
arXiv:1610.05341 · doi:10.1088/1742-6596/832/1/012046
Abstract
This presents an overview of relativistic hydrodynamic modeling in heavy-ion collisions prepared for Hot Quarks 2016, at South Padre Island, TX, USA. The influence of the initial state and viscosity on various experimental observables are discussed. Specific problems that arise in the hydrodynamical modeling at the Beam Energy Scan are briefly discussed.
6 pages, 2 figures, contribution to the proceedings of Hot Quarks 2016 conference at South Padre Island, TX, USA
References in corpus (15)
- The order of the quantum chromodynamics transition predicted by the standard model of particle physics
- Applying Bayesian parameter estimation to relativistic heavy-ion collisions: simultaneous characterization of the initial state and quark-gluon plasma medium
- Alternative ansatz to wounded nucleon and binary collision scaling in high-energy nuclear collisions
- Triangularity and Dipole Asymmetry in Heavy Ion Collisions
- Dynamic universality class of the QCD critical point
- Freeze-out parameters from electric charge and baryon number fluctuations: is there consistency?
- Bulk viscosity-driven suppression of shear viscosity effects on the flow harmonics at RHIC
- Elliptic and triangular flow of heavy flavor in heavy-ion collisions
- Initial conditions for hydrodynamics from weakly coupled pre-equilibrium evolution
- Quantifying properties of hot and dense QCD matter through systematic model-to-data comparison
- Viscous Effects on the Mapping of the Initial to Final State in Heavy Ion Collisions
- Bulk viscous evolution within anisotropic hydrodynamics
- Directed flow at mid-rapidity in event-by-event hydrodynamics
- Bulk and shear viscosities of hot and dense hadron gas
- Symmetric cumulants and event-plane correlations in Pb+Pb collisions