Azimuthal angle correlations at large rapidities: revisiting density variation mechanism
arXiv:1709.08954 · doi:10.1140/epjc/s10052-017-5350-3
Abstract
In the paper we discuss the angular correlation present in hadron-hadron collisions at large rapidity difference ($\bas\,y_{12}\,\gg\,1$). We find that in the CGC/saturation approach the largest contribution stems from the density variation mechanism. Our principal results are that the odd Fourier harmonics(), decrease substantially as function of , while the even harmonics ( ), increase considerably with a growth of .
26 pp., 12 figures in pdf files
References in corpus (14)
- Observation of long-range near-side angular correlations in proton-lead collisions at the LHC
- Multi-particle azimuthal correlations in p-Pb and Pb-Pb collisions at the CERN Large Hadron Collider
- Long Range Correlations and the Soft Ridge in Relativistic Nuclear Collisions
- Angular Correlations in Gluon Production at High Energy
- On the Origin of the "Ridge" phenomenon induced by Jets in Heavy Ion Collisions
- One gluon, two gluon: multigluon production via high energy evolution
- Inclusive gluon production in the dipole approach: AGK cutting rules
- CGC/saturation approach: a new impact-parameter dependent model in the next-to-leading order of perturbative QCD
- Single and double inclusive cross-sections for nucleus-nucleus collisions in the peryrbative QCD
- Long-range angular correlations at the LHC with ALICE
- Perturbative QCD and beyond: azimuthal angle correlations in deuteron-deuteron scattering from Bose-Einstein correlations
- Anisotropic flows from initial state of a fast nucleus
- A CGC/saturation approach for angular correlations in proton-proton scattering
- Bose-Einstein correlations in perturbative QCD: dependence on multiplicity