State-of-the-art hydrodynamic models of heavy-ion collisions have considerable theoretical model uncertainties in the description of the very early pre-hydrodynamic stage. We add a new computational module, K$_\mathrm{T}$Iso, that describes the pre-hydrodynamic evolution kinetically, based on the relativistic Boltzmann equation with collisions treated in the Isotropization Time Approximation. As a novelty, K$_\mathrm{T}$Iso allows for the inclusion and evolution of initial-state momentum anisotropies. To maintain computational efficiency K$_\mathrm{T}$Iso assumes strict longitudinal boost invariance and allows collisions to isotropize only the transverse momenta. We use it to explore the sensitivity of hadronic observables measured in relat...
A recently formulated framework of highly anisotropic and strongly dissipative hydrodynamics (ADHYDR...
We develop a combined hydro-kinetic approach which incorporates a hydrodynamical expansion of the sy...
In this talk, we report on our results about the computation of isotropization and thermalization ti...
AbstractI discuss how local thermal equilibrium and hydrodynamical flow are reached in heavy-ion col...
The pre-equilibrium evolution of a quark-gluon plasma produced in a heavy-ion collision is studied i...
Anisotropic expansion of Quark-Gluon Plasma fireballs created in heavy ion collisions at high energi...
High-energy nuclear collisions produce a nonequilibrium plasma of quarks and gluons which thermalize...
We derive a general formula for the early time dependence of a phase space distribution evolving acc...
We develop a macroscopic description of the space-time evolution of the energy-momentum tensor durin...
A 1+1 dimensional hydrodynamical model in the light-cone coordinates is used to describe central hea...
Due to anisotropic momentum distributions the parton system produced at the early stage of relativis...
The early dynamics in heavy-ion collisions involves a rapid, far from equilibrium evolution. This ea...
The currently accepted theory that governs the dynamics of quarks and gluons, within the Standard Mo...
A model for energy, pressure, and flow velocity distributions at the beginning of ultrarelativistic ...
In this study we model early time dynamics of relativistic heavy ion collisions by an initial color-...
A recently formulated framework of highly anisotropic and strongly dissipative hydrodynamics (ADHYDR...
We develop a combined hydro-kinetic approach which incorporates a hydrodynamical expansion of the sy...
In this talk, we report on our results about the computation of isotropization and thermalization ti...
AbstractI discuss how local thermal equilibrium and hydrodynamical flow are reached in heavy-ion col...
The pre-equilibrium evolution of a quark-gluon plasma produced in a heavy-ion collision is studied i...
Anisotropic expansion of Quark-Gluon Plasma fireballs created in heavy ion collisions at high energi...
High-energy nuclear collisions produce a nonequilibrium plasma of quarks and gluons which thermalize...
We derive a general formula for the early time dependence of a phase space distribution evolving acc...
We develop a macroscopic description of the space-time evolution of the energy-momentum tensor durin...
A 1+1 dimensional hydrodynamical model in the light-cone coordinates is used to describe central hea...
Due to anisotropic momentum distributions the parton system produced at the early stage of relativis...
The early dynamics in heavy-ion collisions involves a rapid, far from equilibrium evolution. This ea...
The currently accepted theory that governs the dynamics of quarks and gluons, within the Standard Mo...
A model for energy, pressure, and flow velocity distributions at the beginning of ultrarelativistic ...
In this study we model early time dynamics of relativistic heavy ion collisions by an initial color-...
A recently formulated framework of highly anisotropic and strongly dissipative hydrodynamics (ADHYDR...
We develop a combined hydro-kinetic approach which incorporates a hydrodynamical expansion of the sy...
In this talk, we report on our results about the computation of isotropization and thermalization ti...