We consider an initially at rest colored particle which is struck by an ultrarelativistic nucleus. The particle is treated classically with respect to both its motion and its color charge. The nucleus is treated as a sheet of colored glass within the context of the color glass condensate framework. We compute both the momentum and coordinates of the struck classical particle and the emitted radiation. Our computations generalize the classic electrodynamics computation of the radiation of an accelerated charged particle to include the radiation induced by the charged gluon field. This latter contribution adds to the classic electrodynamics result and produces a gluon rapidity distribution that is roughly constant as a function of rapidity at...
We study gluon production in high energy proton-nucleus collisions in the semi-classical framework o...
We describe the dynamics of gluons and quarks in a relativistic nuclear collision, within the framew...
The density of gluons produced in the central rapidity region of a heavy ion collision is poorly kno...
We consider an initially at rest colored particle which is struck by an ultrarelativistic nucleus. T...
The goal of this paper is to extend the results of [K. Kajantie, L. D. McLerran, and R. Paatelainen,...
The goal of this paper is to extend the results of [K. Kajantie, L. D. McLerran, and R. Paatelainen,...
We investigate the space-time structure of the classical gluon field produced in an ultrarelativisti...
McLerran LD, Schlichting S, Sen S. Spacetime picture of baryon stopping in the color-glass condensat...
AbstractThe initial energy density produced in an ultrarelativistic heavy ion collision can, in the ...
The dynamics of gluons and quarks in a relativistic nuclear collision are described, within the fram...
We present a brief review of phenomenological applications of the gluon saturation approach to the p...
In the Color Glass Condensate (CGC) effective field theory, colliding sheets of Colored Glass form a...
The initial energy density produced in an ultrarelativistic heavy ion collision can, in a classical ...
To achieve an understanding of the thermalization of a quark-gluon plasma, starting from QCD without...
At very high energies, the relevant component of the hadron wavefunction can be described as a Color...
We study gluon production in high energy proton-nucleus collisions in the semi-classical framework o...
We describe the dynamics of gluons and quarks in a relativistic nuclear collision, within the framew...
The density of gluons produced in the central rapidity region of a heavy ion collision is poorly kno...
We consider an initially at rest colored particle which is struck by an ultrarelativistic nucleus. T...
The goal of this paper is to extend the results of [K. Kajantie, L. D. McLerran, and R. Paatelainen,...
The goal of this paper is to extend the results of [K. Kajantie, L. D. McLerran, and R. Paatelainen,...
We investigate the space-time structure of the classical gluon field produced in an ultrarelativisti...
McLerran LD, Schlichting S, Sen S. Spacetime picture of baryon stopping in the color-glass condensat...
AbstractThe initial energy density produced in an ultrarelativistic heavy ion collision can, in the ...
The dynamics of gluons and quarks in a relativistic nuclear collision are described, within the fram...
We present a brief review of phenomenological applications of the gluon saturation approach to the p...
In the Color Glass Condensate (CGC) effective field theory, colliding sheets of Colored Glass form a...
The initial energy density produced in an ultrarelativistic heavy ion collision can, in a classical ...
To achieve an understanding of the thermalization of a quark-gluon plasma, starting from QCD without...
At very high energies, the relevant component of the hadron wavefunction can be described as a Color...
We study gluon production in high energy proton-nucleus collisions in the semi-classical framework o...
We describe the dynamics of gluons and quarks in a relativistic nuclear collision, within the framew...
The density of gluons produced in the central rapidity region of a heavy ion collision is poorly kno...