The CCFM Monte Carlo generator CASCADE 2.2.0
arXiv:1008.0152 · doi:10.1140/epjc/s10052-010-1507-z
Abstract
CASCADE is a full hadron level Monte Carlo event generator for ep, γp and p\bar{p} and pp processes, which uses the CCFM evolution equation for the initial state cascade in a backward evolution approach supplemented with off - shell matrix elements for the hard scattering. A detailed program description is given, with emphasis on parameters the user wants to change and variables which completely specify the generated events.
References in corpus (6)
- Forward Jet Production at the Large Hadron Collider
- High Energy Resummation of Drell-Yan Processes
- Angular correlations in multi-jet final states from kt-dependent parton showers
- Production of electroweak gauge bosons in off-shell gluon-gluon fusion
- Status of CCFM - unintegrated gluon densities
- Towards precision determination of uPDFs
Cited by in corpus (13)
- The CCFM uPDF evolution uPDFevolv
- Forward-Central Jet Correlations at the Large Hadron Collider
- Ratios of dijet production cross sections as a function of the absolute difference in rapidity between jets in proton-proton collisions at sqrt(s) = 7 TeV
- Small- dynamics in forward-central dijet decorrelations at the LHC
- Hadroproduction of electroweak gauge boson plus jets and TMD parton density functions
- Heavy Flavour Production at Tevatron and Parton Shower Effects
- NLO corrections to hard process in QCD shower -- proof of concept
- Associated production at the LHC and prospects to observe double parton interactions
- A kT-dependent sea-quark density for the CASCADE Monte Carlo event generator
- Isolated prompt photon pair production at hadron colliders with kt-factorization
- Kinematical constraint effects in the evolution equations based on angular ordering
- On the possibility to detect the Higgs decay in the associated production at the LHC
- Impact of coherence and low x effects on decorelations of forward-central jets