In a fully relativistic approach, a RLSM description of nuclei colliding at ultra-relativistic energies can be formulated within the framework of a classical transport theory. The valence quarks of the nucleons are described through collections of classical point-like particles moving in the continuum. They are coupled to soft gluon fields which are described through the Yang Mills equations on a gauge lattice. In a first step, we focus on the range of low-$p_t$ interactions. Results from numerical model simulations of pure gluonic nucleus-nucleus collisions on SU(2) gauge lattices in 3+1 dimensions are presented. They show an effect which we call the glue burst
A microscopic model of deconfined matter based on color interactions between semi-classical quarks i...
The formalism for describing hadrons using a light-cone Hamiltonian of SU(N) gauge theory on a coars...
Lattice quantum chromodynamics (QCD), defined on a discrete space-time lattice, leads to a spectacul...
We describe the dynamics of gluons and quarks in a relativistic nuclear collision, within the framew...
The dynamics of gluons and quarks in a relativistic nuclear collision are described, within the fram...
We propose a novel formalism for simultaneously describing both, the hard and soft parton dynamics i...
We discuss a real time, non-perturbative computation of the transverse dynamics of gluon fields at c...
To achieve an understanding of the thermalization of a quark-gluon plasma, starting from QCD without...
The quark-molecular-dynamics model is used to study microscopically the dynamics of the coloured qua...
We investigate the space-time structure of the classical gluon field produced in an ultrarelativisti...
AbstractWe study the evolution of the quark-gluon composition of the plasma created in ultra-Relativ...
A quantum-kinetic formulation of the dynamical evolution of a high-energy non-equilibrium gluon syst...
Hadron-hadron collisions at high energies are investigated in the Ultra- relativistic-Quantum-Molecu...
Relativistic heavy ion collisions aim to study the quark-gluon plasma, a hot and dense state of m...
We construct an analytical expression for the distribution of gluons in the state immediately follow...
A microscopic model of deconfined matter based on color interactions between semi-classical quarks i...
The formalism for describing hadrons using a light-cone Hamiltonian of SU(N) gauge theory on a coars...
Lattice quantum chromodynamics (QCD), defined on a discrete space-time lattice, leads to a spectacul...
We describe the dynamics of gluons and quarks in a relativistic nuclear collision, within the framew...
The dynamics of gluons and quarks in a relativistic nuclear collision are described, within the fram...
We propose a novel formalism for simultaneously describing both, the hard and soft parton dynamics i...
We discuss a real time, non-perturbative computation of the transverse dynamics of gluon fields at c...
To achieve an understanding of the thermalization of a quark-gluon plasma, starting from QCD without...
The quark-molecular-dynamics model is used to study microscopically the dynamics of the coloured qua...
We investigate the space-time structure of the classical gluon field produced in an ultrarelativisti...
AbstractWe study the evolution of the quark-gluon composition of the plasma created in ultra-Relativ...
A quantum-kinetic formulation of the dynamical evolution of a high-energy non-equilibrium gluon syst...
Hadron-hadron collisions at high energies are investigated in the Ultra- relativistic-Quantum-Molecu...
Relativistic heavy ion collisions aim to study the quark-gluon plasma, a hot and dense state of m...
We construct an analytical expression for the distribution of gluons in the state immediately follow...
A microscopic model of deconfined matter based on color interactions between semi-classical quarks i...
The formalism for describing hadrons using a light-cone Hamiltonian of SU(N) gauge theory on a coars...
Lattice quantum chromodynamics (QCD), defined on a discrete space-time lattice, leads to a spectacul...