We consider the collisions of large nuclei using the theory of McLerran and Venugopalan. The two nuclei are ultra-relativistic and sources of non-abelian Weizs\"acker-Williams fields. These sources are in the end averaged over all color orientations locally with a Gaussian weight. We show that there is a solution of the equations of motion for the two nucleus scattering problem where the fields are time and rapidity independent before the collision. After the collision the solution depends on proper time, but is independent of rapidity. We show how to extract the produced gluons from the classical evolution of the fields
The initial energy density produced in an ultrarelativistic heavy ion collision can, in a classical ...
We show estimates for shadowing of gluons at small values of $x$, appropriate to RHIC and LHC experi...
We derive expressions for the gluon production cross sections in the single diffractive proton-nucle...
We construct an analytical expression for the distribution of gluons in the state immediately follow...
The dynamics of gluons and quarks in a relativistic nuclear collision are described, within the fram...
At very high energies, weak coupling, non-perturbative methods can be used to study classical gluon ...
We solve the Yang-Mills equations in the framework of the McLerran-Venugopalan model for small times...
We investigate the space-time structure of the classical gluon field produced in an ultrarelativisti...
We discuss a real time, non-perturbative computation of the transverse dynamics of gluon fields at c...
In very high energy nuclear collisions, the initial energy of produced gluons per unit area per unit...
We describe the dynamics of gluons and quarks in a relativistic nuclear collision, within the framew...
We propose a novel formalism for simultaneously describing both, the hard and soft parton dynamics i...
This talk discusses some recent studies of gluon saturation in nuclei. We stress the connection betw...
We construct a weak coupling, many body theory to compute parton distributions in large nuclei for x...
We apply a diagrammatic approach to study Higgs boson, a color-neutral heavy particle, production in...
The initial energy density produced in an ultrarelativistic heavy ion collision can, in a classical ...
We show estimates for shadowing of gluons at small values of $x$, appropriate to RHIC and LHC experi...
We derive expressions for the gluon production cross sections in the single diffractive proton-nucle...
We construct an analytical expression for the distribution of gluons in the state immediately follow...
The dynamics of gluons and quarks in a relativistic nuclear collision are described, within the fram...
At very high energies, weak coupling, non-perturbative methods can be used to study classical gluon ...
We solve the Yang-Mills equations in the framework of the McLerran-Venugopalan model for small times...
We investigate the space-time structure of the classical gluon field produced in an ultrarelativisti...
We discuss a real time, non-perturbative computation of the transverse dynamics of gluon fields at c...
In very high energy nuclear collisions, the initial energy of produced gluons per unit area per unit...
We describe the dynamics of gluons and quarks in a relativistic nuclear collision, within the framew...
We propose a novel formalism for simultaneously describing both, the hard and soft parton dynamics i...
This talk discusses some recent studies of gluon saturation in nuclei. We stress the connection betw...
We construct a weak coupling, many body theory to compute parton distributions in large nuclei for x...
We apply a diagrammatic approach to study Higgs boson, a color-neutral heavy particle, production in...
The initial energy density produced in an ultrarelativistic heavy ion collision can, in a classical ...
We show estimates for shadowing of gluons at small values of $x$, appropriate to RHIC and LHC experi...
We derive expressions for the gluon production cross sections in the single diffractive proton-nucle...