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Using Drell-Yan to probe the underlying event in Run II at Collider Detector at Fermilab (CDF)
Author(s) -
D. Kar
Publication year - 2008
Publication title -
osti oai (u.s. department of energy office of scientific and technical information)
Language(s) - English
Resource type - Reports
DOI - 10.2172/944231
Subject(s) - physics , particle physics , parton , nuclear physics , collider detector at fermilab , lepton , event (particle physics) , event generator , drell–yan process , hadron , large hadron collider , monte carlo method , fermilab , quantum chromodynamics , jet (fluid) , collider , tevatron , electron , statistics , mathematics , quantum mechanics , thermodynamics
We study the behavior of charged particles produced in association with Drell-Yan lepton-pairs in the region of the Z-boson in proton-antiproton collisions at 1.96 TeV. We use the direction of the Z-boson in each event to define 'toward', 'away', and 'transverse' regions. For Drell-Yan production (excluding the leptons) both the 'toward' and 'transverse' regions are very sensitive to the 'underlying event', which is defined as everything except the two hard scattered components. The data are corrected to the particle level and are then compared with several PYTHIA models (with multiple parton interactions) and HERWIG (without multiple parton interactions) at the particle level (i.e. generator level). The data are also compared with a previous analysis on the behavior of the 'underlying event' in high transverse momentum jet production. The goal is to produce data that can be used by the theorists to tune and improve the QCD Monte-Carlo models of the 'underlying event' that are used to simulate hadron-hadron collisions

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