Anisotropic hydrodynamics
arXiv:1210.1677 · doi:10.1016/j.nuclphysa.2013.02.138
Abstract
The recently formulated framework of anisotropic hydrodynamics is used in 3+1 dimensions to study behavior of matter created in relativistic heavy-ion collisions. The model predictions for various hadronic observables show that the effects of the initial anisotropy of pressure may be compensated by appropriate adjustment of the initial energy density. In this way, the final hadronic observables become insensitive to the early stage dynamics and the early thermalization/isotropization puzzle may be circumvented.
Quark Matter 2012 proceedings
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Cited by in corpus (7)
- Dilepton production and reaction dynamics in heavy-ion collisions at SIS energies from coarse-grained transport simulations
- A coarse-graining approach for dilepton production at SPS energies
- Photon and dilepton production at the Facility for Antiproton and Ion Research and the beam energy scan program at the Relativistic Heavy-Ion Collider using coarse-grained microscopic transport simulations
- Energy, centrality and momentum dependence of dielectron production at collider energies in a coarse-grained transport approach
- Transport coefficients in second-order non-conformal viscous hydrodynamics
- Vector Meson Spectral Functions in a Coarse-Graining Approach
- Extended applicability domain of viscous anisotropic hydrodynamics in (2+1)-D Bjorken flow with transverse expansion