Collective flows in heavy-ion collisions from AGS ((2-11)A GeV) to SPS ((40,158)A GeV) energies are investigated in a nonequilibrium transport model with the nuclear mean field (MF). Sideward left angle bracketp/sub xare systematically studied with different assumptions for the nuclear equation of state (EOS). We find that the momentum dependence on the nuclear MF is important for the understanding of the proton collective flows at AGS and SPS energies. Calculated results with momentum-dependent MF qualitatively reproduce the experimental data of proton sideward, directed, and elliptic flows in a incident energy range of (2-158)A GeV
Basic features of directed and elliptic flows of identified hadrons in heavy-ion collisions at inter...
The collective motion of nucleons from high-energy heavy-ion collisions is analyzed within a relativ...
A theoretical analysis of collective momentum transfer is performed in heavy-ion reactions below 100...
Collective flows in heavy-ion collisions from AGS [(2–11)A GeV] to SPS [(40, 158)A GeV] energies are...
Collective flows in heavy-ion collisions from SIS (1 AGeV), AGS (2-11 AGeV) to SPS (158 AGeV) energi...
Collective flow of nuclear matter probes the dynamics of heavy-ion reactions and can provide informa...
The impression of mean field and spectator matter has been studied through the collision geometry de...
We discuss the problems involved in extracting the nuclear equation-of-state from heavy-ion collisio...
Midrapidity nucleon elliptic flow is studied within the Boltzmann-equation simulations of symmetric ...
Collective flow in heavy ion collisions was first observed experimentally more than a decade ago at ...
Within the hadronic transport model IBUU04, we study the density-dependent symmetry energy by using ...
International audienceStatic and dynamical aspects of nuclear systems are described through an exten...
We study flow phenomena in relativistic heavy-ion collisions, both in transverse and radial directio...
Sidewards directed fragment flow has been extracted for 84Kr+197Au collisions at E/A=200MeV, using t...
We investigate both directed and elliptic flow and linear momentum transfer in intermediate energy h...
Basic features of directed and elliptic flows of identified hadrons in heavy-ion collisions at inter...
The collective motion of nucleons from high-energy heavy-ion collisions is analyzed within a relativ...
A theoretical analysis of collective momentum transfer is performed in heavy-ion reactions below 100...
Collective flows in heavy-ion collisions from AGS [(2–11)A GeV] to SPS [(40, 158)A GeV] energies are...
Collective flows in heavy-ion collisions from SIS (1 AGeV), AGS (2-11 AGeV) to SPS (158 AGeV) energi...
Collective flow of nuclear matter probes the dynamics of heavy-ion reactions and can provide informa...
The impression of mean field and spectator matter has been studied through the collision geometry de...
We discuss the problems involved in extracting the nuclear equation-of-state from heavy-ion collisio...
Midrapidity nucleon elliptic flow is studied within the Boltzmann-equation simulations of symmetric ...
Collective flow in heavy ion collisions was first observed experimentally more than a decade ago at ...
Within the hadronic transport model IBUU04, we study the density-dependent symmetry energy by using ...
International audienceStatic and dynamical aspects of nuclear systems are described through an exten...
We study flow phenomena in relativistic heavy-ion collisions, both in transverse and radial directio...
Sidewards directed fragment flow has been extracted for 84Kr+197Au collisions at E/A=200MeV, using t...
We investigate both directed and elliptic flow and linear momentum transfer in intermediate energy h...
Basic features of directed and elliptic flows of identified hadrons in heavy-ion collisions at inter...
The collective motion of nucleons from high-energy heavy-ion collisions is analyzed within a relativ...
A theoretical analysis of collective momentum transfer is performed in heavy-ion reactions below 100...