Expansion rates at RHIC
arXiv:nucl-th/0304036 · doi:10.1556/APH.21.2004.2-4.22
Abstract
A detailed description of the temporal evolution of the thermodynamic fields in heavy ion collisions is presented within a hydrodynamic framework. Particular attention is devoted to the evolution of the collective flow fields and their space-time gradients.
Proceedings for the 19th Winter Workshop on Nuclear Dynamics, Breckenridge, Colorado, March 8-15, 2003, 6 pages
References in corpus (2)
Cited by in corpus (9)
- Angular Dependence of Jet Quenching Indicates Its Strong Enhancement Near the QCD Phase Transition
- Early collective expansion: Relativistic hydrodynamics and the transport properties of QCD matter
- Glauber dynamics of phase transitions: SU(3) lattice gauge theory
- Hydrodynamic source with continuous emission in Au+Au collisions at GeV
- Langevin dynamics of the pure SU(2) deconfining transition
- Measurement of -meson production in CuAu at GeV and UU at GeV
- Exact Relativistic Ideal Hydrodynamical Solutions in (1+3)D with Longitudinal and Transverse Flows
- Deconfinement transition dynamics and early thermalization in QGP
- Quark Stars: Features and Findings