Mazeliauskas A, Kurkela A, Paquet J-F, Schlichting S, Teaney D. Initial conditions for heavy ion collisions with QCD kinetic theory. In: Proceedings of 12th International Workshop on High-pT Physics in the RHIC/LHC Era (High-pT2017). Proceedings of Science. Vol 320. Proceedings of Science (PoS); 2019.We employ the leading order QCD kinetic theory to describe a consistent matching between the initial stage of a heavy ion collision and the subsequent hydrodynamic evolution. We use the linearized kinetic response functions around the non-equilibirum longitudinally expanding background to map initial energy and momentum perturbations to the energy momentum tensor at hydrodynamic initialization time τ hydro . We check that hadronic observables...
We introduce an event-by-event perturbative-QCD + saturation + hydro (“EKRT”) framework for ultrare...
The interpretation of relativistic heavy-ion collisions at RHIC energies with thermal concepts is la...
Schlichting S, Teaney D. The First fm/c of Heavy-Ion Collisions. Annual Review of Nuclear and Partic...
Mazeliauskas A, Kurkela A, Paquet J-F, Schlichting S, Teaney D. Matching the non-equilibrium initial...
Kurkela A, Mazeliauskas A, Paquet J-F, Schlichting S, Teaney D. Matching the Nonequilibrium Initial ...
We develop a macroscopic description of the space-time evolution of the energy-momentum tensor durin...
The produced matter in the high energy nuclear collisions reinteracts and forms a plasma which ultim...
High-energy nuclear collisions produce a nonequilibrium plasma of quarks and gluons which thermalize...
High-energy nuclear collisions produce a nonequilibrium plasma of quarks and gluons which thermalize...
We use effective kinetic theory, accurate at weak coupling, to simulate the pre-equilibrium evolutio...
We develop a combined hydro-kinetic approach which incorporates a hydrodynamical expansion of the sy...
This presentation discusses some recently active topics in the theoretical interpretation of high en...
We develop a combined hydro-kinetic approach which incorporates a hydrodynamical expansion of the sy...
Kamata S, Martinez M, Plaschke P, Ochsenfeld S, Schlichting S. Hydrodynamization and nonequilibrium ...
I discuss how local thermal equilibrium and hydrodynamical flow are reached in heavy-ion collisions ...
We introduce an event-by-event perturbative-QCD + saturation + hydro (“EKRT”) framework for ultrare...
The interpretation of relativistic heavy-ion collisions at RHIC energies with thermal concepts is la...
Schlichting S, Teaney D. The First fm/c of Heavy-Ion Collisions. Annual Review of Nuclear and Partic...
Mazeliauskas A, Kurkela A, Paquet J-F, Schlichting S, Teaney D. Matching the non-equilibrium initial...
Kurkela A, Mazeliauskas A, Paquet J-F, Schlichting S, Teaney D. Matching the Nonequilibrium Initial ...
We develop a macroscopic description of the space-time evolution of the energy-momentum tensor durin...
The produced matter in the high energy nuclear collisions reinteracts and forms a plasma which ultim...
High-energy nuclear collisions produce a nonequilibrium plasma of quarks and gluons which thermalize...
High-energy nuclear collisions produce a nonequilibrium plasma of quarks and gluons which thermalize...
We use effective kinetic theory, accurate at weak coupling, to simulate the pre-equilibrium evolutio...
We develop a combined hydro-kinetic approach which incorporates a hydrodynamical expansion of the sy...
This presentation discusses some recently active topics in the theoretical interpretation of high en...
We develop a combined hydro-kinetic approach which incorporates a hydrodynamical expansion of the sy...
Kamata S, Martinez M, Plaschke P, Ochsenfeld S, Schlichting S. Hydrodynamization and nonequilibrium ...
I discuss how local thermal equilibrium and hydrodynamical flow are reached in heavy-ion collisions ...
We introduce an event-by-event perturbative-QCD + saturation + hydro (“EKRT”) framework for ultrare...
The interpretation of relativistic heavy-ion collisions at RHIC energies with thermal concepts is la...
Schlichting S, Teaney D. The First fm/c of Heavy-Ion Collisions. Annual Review of Nuclear and Partic...