Early Time Dynamics of Gluon Fields in High Energy Nuclear Collisions
arXiv:1507.03524 · doi:10.1103/PhysRevC.92.064912
Abstract
Nuclei colliding at very high energy create a strong, quasi-classical gluon field during the initial phase of their interaction. We present an analytic calculation of the initial space-time evolution of this field in the limit of very high energies using a formal recursive solution of the Yang-Mills equations. We provide analytic expressions for the initial chromo-electric and chromo-magnetic fields and for their energy-momentum tensor. In particular, we discuss event-averaged results for energy density and energy flow as well as for longitudinal and transverse pressure of this system. For example, we find that the ratio of longitudinal to transverse pressure very early in the system behaves as where is the longitudinal proper time, is related to the saturation scales of the two nuclei, and with a scale to be defined later. Our results are generally applicable if . As already discussed in a previous paper, the transverse energy flow of the gluon field exhibits hydrodynamic-like contributions that follow transverse gradients of the energy density . In addition, a rapidity-odd energy flow also emerges from the non-abelian analog of Gauss' Law and generates non-vanishing angular momentum of the field. We will discuss the space-time picture that emerges from our analysis and its implications for observables in heavy ion collisions.
26 pages, 9 figures
References in corpus (16)
- An Introduction to PYTHIA 8.2
- Glauber Modeling in High Energy Nuclear Collisions
- The Color Glass Condensate
- Viscosity Information from Relativistic Nuclear Collisions: How Perfect is the Fluid Observed at RHIC?
- 200 A GeV Au+Au collisions serve a nearly perfect quark-gluon liquid
- Some Features of the Glasma
- Triumvirate of Running Couplings in Small-x Evolution
- Flow Vorticity in Peripheral High Energy Heavy Ion Collisions
- Energy density of the Glasma
- High energy factorization in nucleus-nucleus collisions
- Universality of the saturation scale and the initial eccentricity in heavy ion collisions
- Initial energy density and gluon distribution from the Glasma in heavy-ion collisions
- Light projectile scattering off the Color Glass Condensate
- Collinear Singularities and Running Coupling Corrections to Gluon Production in CGC
- Decoherence and Entropy Production in Relativistic Nuclear Collisions
- Wilson lines - color charge densities correlators and the production of eta' in the CGC for pp and pA collisions
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