Initial-state parton shower kinematics for NLO event generators
arXiv:hep-ph/0702138 · doi:10.1140/epjc/s10052-007-0342-3
Abstract
We are developing a consistent method to combine tree-level event generators for hadron collision interactions with those including one additional QCD radiation from the initial-state partons, based on the limited leading-log (LLL) subtraction method, aiming at an application to NLO event generators. In this method, a boundary between non-radiative and radiative processes necessarily appears at the factorization scale (mu_F). The radiation effects are simulated using a parton shower (PS) in non-radiative processes. It is therefore crucial in our method to apply a PS which well reproduces the radiation activities evaluated from the matrix-element (ME) calculations for radiative processes. The PS activity depends on the applied kinematics model. In this paper we introduce two models for our simple initial-state leading-log PS: a model similar to the "old" PYTHIA-PS and a p_T-prefixed model motivated by ME calculations. PS simulations employing these models are tested using W-boson production at LHC as an example. Both simulations show a smooth matching to the LLL-subtracted W + 1 jet simulation in the p_T distribution of W bosons, and the summed p_T spectra are stable against a variation of mu_F, despite that the p_T-prefixed PS results in an apparently harder p_T spectrum.
10 pages, 6 figures; minor changes in the abstract and the text according to the comments from the referee
References in corpus (11)
- PYTHIA 6.4 Physics and Manual
- PYTHIA 6.2 Physics and Manual
- HERWIG 6.5: an event generator for Hadron Emission Reactions With Interfering Gluons (including supersymmetric processes)
- Matching NLO QCD computations and parton shower simulations
- QCD Matrix Elements + Parton Showers
- The Dipole Formalism for Next-to-Leading Order QCD Calculations with Massive Partons
- A Positive-Weight Next-to-Leading-Order Monte Carlo for Z Pair Hadroproduction
- QCD event generators with next-to-leading order matrix-elements and parton showers
- Subtraction method for NLO corrections in Monte-Carlo event generators for leptoproduction
- Subtraction method for NLO corrections in Monte-Carlo event generators for Z boson production
- NLO corrections in MC event generator for angular distribution of Drell-Yan lepton pair production
Cited by in corpus (9)
- Parton showers from the dipole formalism
- GR@PPA 2.8: initial-state jet matching for weak boson production processes at hadron collisions
- Simulation of boson spectrum at Tevatron by leading-order event generators
- Consistent simulation of non-resonant diphoton production at hadron collisions with a custom-made parton shower
- Consistent simulation of direct-photon production in hadron collisions including associated two-jet production
- ME-PS matching in the simulation of multi-jet production in hadron collisions using a subtraction method
- Consistent simulation of non-resonant diphoton production in hadron collisions including associated jet production up to two jets
- Precise simulation of the initial-state QCD activity associated with -boson production in hadron collisions
- GR@PPA 2.9: radiation matching for simulating photon production processes in hadron collisions