Highly compressed nuclear matter created in relativistic heavy collisions is to large extent governed by local non-equilibrium. As an idealised scenario colliding nuclear matter configurations are studied with an effective in-medium interaction based on the microscopic DBHF model. It is found that on top of the repulsive momentum dependence of the nuclear forces kinetic non-equilibrium leads to an effective softening of the equation of state as compared to ground state nuclear matter. The separation of phase space which is the basic feature of such anisotropic configurations has thereby a similar influence as the introduction of a virtual new degree of freedom
Thermodynamical variables and their time evolution are studied for central relativistic heavy ion co...
A set of different equations of state is implemented in the molecular dynamics part of a non-equilib...
The non-equilibrium equation of state is found in the approximation of the functional on the local d...
We discuss the problems involved in extracting the nuclear equation-of-state from heavy-ion collisio...
The hypothesis of local equilibrium (LE) in relativistic heavy ion collisions at energies from AGS t...
The effect of the nuclear equation of state on high-energy heavy-ion collisions is studied in two se...
Several investigations involving strongly interacting matter at high temperature and density are pur...
The assumption of local equilibrium in relativistic heavy ion collisions at energies from 10.7 AGeV ...
Stopping power and thermalization in relativistic heavy ion collisions is investigated employing the...
We investigate the thermodynamical properties of nuclear matter in heavy ion collisions, in particul...
The nuclear equation of state (EOS) is at the center of numerous theoreticaland experimental efforts...
An attractive, energy-dependent mean-field potential for baryons is introduced in order to generate ...
International audienceThe nuclear equation of state (EOS) is at the center of numerous theoretical a...
International audienceThe nuclear equation of state (EOS) is at the center of numerous theoretical a...
We investigate differential in-plane and out-of-plane flow observables in heavy ion reactions at int...
Thermodynamical variables and their time evolution are studied for central relativistic heavy ion co...
A set of different equations of state is implemented in the molecular dynamics part of a non-equilib...
The non-equilibrium equation of state is found in the approximation of the functional on the local d...
We discuss the problems involved in extracting the nuclear equation-of-state from heavy-ion collisio...
The hypothesis of local equilibrium (LE) in relativistic heavy ion collisions at energies from AGS t...
The effect of the nuclear equation of state on high-energy heavy-ion collisions is studied in two se...
Several investigations involving strongly interacting matter at high temperature and density are pur...
The assumption of local equilibrium in relativistic heavy ion collisions at energies from 10.7 AGeV ...
Stopping power and thermalization in relativistic heavy ion collisions is investigated employing the...
We investigate the thermodynamical properties of nuclear matter in heavy ion collisions, in particul...
The nuclear equation of state (EOS) is at the center of numerous theoreticaland experimental efforts...
An attractive, energy-dependent mean-field potential for baryons is introduced in order to generate ...
International audienceThe nuclear equation of state (EOS) is at the center of numerous theoretical a...
International audienceThe nuclear equation of state (EOS) is at the center of numerous theoretical a...
We investigate differential in-plane and out-of-plane flow observables in heavy ion reactions at int...
Thermodynamical variables and their time evolution are studied for central relativistic heavy ion co...
A set of different equations of state is implemented in the molecular dynamics part of a non-equilib...
The non-equilibrium equation of state is found in the approximation of the functional on the local d...