Kinematical constraint effects in the evolution equations based on angular ordering
arXiv:1503.00536 · doi:10.1007/JHEP05(2015)068
Abstract
We study effects of imposing various forms of the kinematical constraints on the full form of the CCFM equation and its non-linear extension. We find that imposing the constraint in its complete form modifies significantly way the shape of gluon density as compared to forms of the constraint used in the numerical calculations and phenomenological applications. In particular the resulting gluon density is suppressed for large values of hard scale related parameter and kT of gluon. This result might be important in description studies of jet correlations at Large Hadron Collider within CCFM approach.
11 pages, 11 figures
References in corpus (8)
- The CCFM Monte Carlo generator CASCADE 2.2.0
- Forward Jet Production at the Large Hadron Collider
- The CCFM uPDF evolution uPDFevolv
- Forward-Central Jet Correlations at the Large Hadron Collider
- Small- dynamics in forward-central dijet decorrelations at the LHC
- Hard scale dependent gluon density, saturation and forward-forward dijet production at the LHC
- Jets in the forward region at the LHC
- Resummation in nonlinear equation for high energy factorizable gluon density and its extension to include coherence