High Gluon Densities in Heavy Ions Collisions
arXiv:1607.04448 · doi:10.1088/1361-6633/aa5435
Abstract
The early stages of heavy ion collisions are dominated by high density systems of gluons that carry each a small fraction of the momenta of the colliding nucleons. A distinguishing feature of such systems is the phenomenon of "saturation" which tames the expected growth of the gluon density as the energy of the collision increases. The onset of saturation occurs at a particular transverse momentum scale, the "saturation momentum", that emerges dynamically and that marks the onset of non-linear gluon interactions. At high energy, and for large nuclei, the saturation momentum is large compared to the typical hadronic scale, making high density gluons amenable to a description with weak coupling techniques. This paper reviews some of the challenges faced in the study of such dense systems of small gluons, and of the progress made in addressing them. The focus is on conceptual issues, and the presentation is both pedagogical, and critical. Examples where high gluon density could play a visible role in heavy ion collisions are briefly discussed at the end, for illustration purpose.
Submitted to Reports on Progress in Physics
References in corpus (29)
- The Color Glass Condensate
- EPS09 - a New Generation of NLO and LO Nuclear Parton Distribution Functions
- Observation of long-range near-side angular correlations in proton-lead collisions at the LHC
- Some Features of the Glasma
- Universality of Unintegrated Gluon Distributions at small x
- NLO evolution of color dipoles
- Quark contribution to the small- evolution of color dipole
- Triumvirate of Running Couplings in Small-x Evolution
- Forward inclusive dijet production and azimuthal correlations in pA collisions
- Solving The High Energy Evolution Equation Including Running Coupling Corrections
- Resumming double logarithms in the QCD evolution of color dipoles
- Azimuthal correlations of forward di-hadrons in d+Au collisions at RHIC in the Color Glass Condensate
- CGC predictions for p+Pb collisions at the LHC
- Explanation of systematics of CMS p+Pb high multiplicity di-hadron data at TeV
- High energy factorization in nucleus-nucleus collisions
- Direct numerical solution of the coordinate space Balitsky-Kovchegov equation at next to leading order
- Photon impact factor in the next-to-leading order
- Particle multiplicities in Lead-Lead collisions at the LHC from non-linear evolution with running coupling
- Geometric scaling in diffractive deep inelastic scattering
- Small x physics and RHIC data
- pT-Broadening and production processes versus dipole/quadrupole amplitudes at next-to-leading order
- Color Glass Condensate and Glasma
- Towards a Nonperturbative Foundation of the Dipole Picture: II. High Energy Limit
- Light projectile scattering off the Color Glass Condensate
- Energy losses in the black disc regime and correlation effects in the STAR forward pion production in dAu collisions
- Quantum chromodynamics at high energy and statistical physics
- The classical field created in early stages of high energy nucleus-nucleus collisions
- On parton number fluctuations at various stages of the rapidity evolution
- Lecture notes on "Quantum chromodynamics and statistical physics"
Cited by in corpus (9)
- Mining for Gluon Saturation at Colliders
- Back-to-back inclusive dijets in DIS at small : Sudakov suppression and gluon saturation at NLO
- NLO impact factor for inclusive photondijet production in DIS at small
- Constructing phase space distributions with internal symmetries
- Boost invariant formulation of the chiral kinetic theory
- Gluon helicity flip in a plane wave background
- Analytic solution of Balitsky-Kovchegov equation with running coupling constant using homogeneous balance method
- Hadronization of correlated gluon fields
- Exploring origin of small x saturation in collinear approach