Free-streaming approximation in early dynamics of relativistic heavy-ion collisions
arXiv:0812.3393 · doi:10.1103/PhysRevC.80.034902
Abstract
We investigate an approximation to early dynamics in relativistic heavy-ion collisions, where after formation the partons are free streaming and around the proper time of 1 fm/c undergo a sudden equilibration described in terms of the Landau matching condition. We discuss physical and formal aspects of this approach. In particular, we show that initial azimuthally asymmetric transverse flow develops for non-central collisions as a consequence of the sudden equilibration. Moreover, the energy-momentum tensor from the free-streaming stage matches very smoothly to the form used in the transverse hydrodynamics, whereas matching to isotropic hydrodynamics requires a more pronounced change in the energy-momentum tensor. After the hydrodynamic phase statistical hadronization is carried out with the help of THERMINATOR. The physical results for the transverse-momentum spectra, the elliptic-flow, and the Hanbury-Brown--Twiss correlation radii, including the ratio R_out/R_side as well as the dependence of the radii on the azimuthal angle (azHBT), are properly described within our approach. The agreement is equally good for a purely hydrodynamic evolution started at an early proper time of 0.25 fm/c, or for the free streaming started at that time, followed by the sudden equilibration at tau ~1 fm/c and then by perfect hydrodynamics. Thus, the inclusion of free streaming allows us to delay the start of hydrodynamics to more realistic times of the order of 1 fm/c.
10 pages, 12 figures
References in corpus (13)
- Some Features of the Glasma
- Space-time evolution of bulk QCD matter
- GLISSANDO: GLauber Initial-State Simulation AND mOre
- Therminator: Thermal heavy-Ion generator
- Resolving the HBT Puzzle in Relativistic Heavy Ion Collision
- Initial condition for hydrodynamics, partonic free streaming, and the uniform description of soft observables at RHIC
- Azimuthally-sensitive femtoscopy from RHIC to LHC in hydrodynamics with statistical hadronization
- Elliptic Flow from a Hybrid CGC, Full 3D Hydro and Hadronic Cascade Model
- Soft heavy-ion physics from hydrodynamics with statistical hadronization - predictions for the Large Hadron Collider
- Transient field fluctuations effects in d+Au and Au+Au collisions at \sqrt{s_nn} = 200 GeV
- Early evolution of transversally thermalized partons
- Evolution of Anisotropy of Parton System from Relativistic Heavy-Ion Collisions
- QCD plasma thermalization, collective flow and extraction of shear viscosity
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- Indications of early thermalization in relativistic heavy-ion collisions
- Early anisotropic hydrodynamics and the RHIC early-thermalization and HBT puzzles
- Consistent hydrodynamic description of one- and two-particle observables in relativistic heavy-ion collisions at RHIC
- Transverse hydrodynamics in relativistic heavy-ion collisions