Rapidity dependence of transverse-momentum multiplicity correlations
arXiv:1703.03003 · doi:10.1103/PhysRevD.96.056011
Abstract
Following previous work [1], we propose to analyze the rapidity dependence of transverse momentum and transverse-momentum multiplicity correlations. We demonstrate that the orthogonal polynomial expansion of the latter has the potential to discriminate between models of particle production.
3 pages; published version
References in corpus (12)
- The Color Glass Condensate
- Effects of initial flow velocity fluctuation in event-by-event (3+1)D hydrodynamics
- Measuring Shear Viscosity Using Transverse Momentum Correlations in Relativistic Nuclear Collisions
- Revealing proton shape fluctuations with incoherent diffraction at high energy
- High Gluon Densities in Heavy Ions Collisions
- Principal component analysis of event-by-event fluctuations
- Longitudinal fluctuations of the fireball density in heavy-ion collisions
- Systematic procedure for analyzing cumulants at any order
- On the probability distribution of the stochastic saturation scale in QCD
- Saturation scale fluctuations and multi-particle rapidity correlations
- The rapidity dependence of the average transverse momentum in p+p and p+Pb collisions - revisited
- Methods for analysis of two-particle rapidity correlation function in high-energy heavy-ion collisions
Cited by in corpus (6)
- Relativistic first-order spin hydrodynamics via the Chapman-Enskog expansion
- Kubo formulae for first-order spin hydrodynamics
- Linear mode analysis from spin transport equation
- The linear mode analysis and spin relaxation
- Propagation of spin channel waves
- Event-by-Event Multiplicity Correlations in Cf(sf)