Search results for "dijet"

showing 7 items of 417 documents

"Table 8" of "Determination of $alpha_{s}$ in second order {QCD} from hadronic $Z$ decays"

1992

The differential 2-jet rate D2 as a function of YCUT.

Z ProductionE+ E- --> HADRONSIntegrated Cross Section91.2E+ E- --> 2JET XE+ E- --> Z0 XJet ProductionCross SectionSIGInclusiveDijet ProductionE+ E- ScatteringExclusiveR measurement
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"Table 5" of "Measurements of differential cross sections of $Z /\gamma^\ast$+jets+X events in proton anti-proton collisions at $\sqrt{s}$=1.96 TeV"

2009

PT distribution of the third jet in events with three or more jets with additional constraints on the electrons.

Z ProductionElectron productionAstrophysics::High Energy Astrophysical PhenomenaJet ProductionPBAR P --> GAMMA* JET JET JET XInclusiveSingle Differential Cross SectionDijet ProductionPBAR P --> Z0 JET JET JET XComputer Science::GraphicsHigh Energy Physics::ExperimentDSIG/DPTTransverse Momentum Dependence1960.0
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"Table 6" of "Measurements of differential cross sections of $Z /\gamma^\ast$+jets+X events in proton anti-proton collisions at $\sqrt{s}$=1.96 TeV"

2009

PT distribution of the third jet in events with three or more jets.

Z ProductionElectron productionAstrophysics::High Energy Astrophysical PhenomenaJet ProductionPBAR P --> GAMMA* JET JET JET XInclusiveSingle Differential Cross SectionDijet ProductionPBAR P --> Z0 JET JET JET XComputer Science::GraphicsHigh Energy Physics::ExperimentDSIG/DPTTransverse Momentum Dependence1960.0
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Measurement of dijet kT in p–Pb collisions at √sNN = 5.02 TeV

2015

A measurement of dijet correlations in p–Pb collisions at √sNN = 5.02 TeV with the ALICE detector is presented. Jets are reconstructed from charged particles measured in the central tracking detectors and neutral energy deposited in the electromagnetic calorimeter. The transverse momentum of the full jet (clustered from charged and neutral constituents) and charged jet (clustered from charged particles only) is corrected event-by-event for the contribution of the underlying event, while corrections for underlying event fluctuations and finite detector resolution are applied on an inclusive basis. A projection of the dijet transverse momentum, kTy = pch+ne T,jet sin(ϕdijet) with ϕdijet the a…

dijet correlationsp–Pb collisionsHigh Energy Physics::ExperimentNuclear Experiment
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Event-by-event picture for the medium-induced jet evolution

2016

We discuss the evolution of an energetic jet which propagates through a dense quark-gluon plasma and radiates gluons due to its interactions with the medium. Within perturbative QCD, this evolution can be described as a stochastic branching process, that we have managed to solve exactly. We present exact, analytic, results for the gluon spectrum (the average gluon distribution) and for the higher n-point functions, which describe correlations and fluctuations. Using these results, we construct the event-by-event picture of the gluon distribution produced via medium-induced gluon branching. In contrast to what happens in a usual QCD cascade in vacuum, the medium-induced branchings are quasi-…

heavy ion: scatteringNuclear Theoryn-point functionHigh Energy Physics::LatticeNuclear TheoryPartonJet (particle physics)gluon: multiplicity01 natural sciencesHigh Energy Physics - Phenomenology (hep-ph)scaling: KNONuclear Experiment[ PHYS.NUCL ] Physics [physics]/Nuclear Theory [nucl-th]quark gluon: plasmamedia_commonQuantum chromodynamicsPhysicsPhysicsgluon: productionPerturbative QCDmatter: effectjet: asymmetrycascadeHigh Energy Physics - PhenomenologyCERN LHC CollNuclear and High Energy PhysicsParticle physics[PHYS.NUCL]Physics [physics]/Nuclear Theory [nucl-th]media_common.quotation_subjectQC1-999energy lossFOS: Physical sciencesjet: correlationformulaAsymmetryNuclear physicsNuclear Theory (nucl-th)gluon: spectrum0103 physical sciencesquantum chromodynamicsstochasticquantum chromodynamics: perturbation theory010306 general physicsScalingBranching processquantum chromodynamics: matterta114010308 nuclear & particles physicsgluon: fluctuationHigh Energy Physics::Phenomenologydijet: asymmetrygluon distributionGluonjet: energy losscorrelation[PHYS.HPHE]Physics [physics]/High Energy Physics - Phenomenology [hep-ph]Quark–gluon plasma[ PHYS.HPHE ] Physics [physics]/High Energy Physics - Phenomenology [hep-ph]gluon: radiationHigh Energy Physics::Experimentjet: quenchingEvent (particle physics)jet evolution
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High-energy resummation effects in the production of Mueller-Navelet dijet at the LHC

2016

We study the production of two forward jets with a large interval of rapidity at hadron colliders, which was proposed by Mueller and Navelet as a possible test of the high energy dynamics of QCD, within a complete next-to-leading logarithm framework. We show that using the Brodsky-Lepage-Mackenzie procedure to fix the renormalization scale leads to a very good description of the recent CMS data at the LHC for the azimuthal correlations of the jets. We show that the inclusion of next-to-leading order corrections to the jet vertex significantly reduces the importance of energy-momentum non-conservation which is inherent to the BFKL approach, for an asymmetric jet configuration. Finally, we ar…

jetsCOLLISIONSParticle physicsLogarithmQC1-999Hadronenergy-momentumFOS: Physical sciencesPartonPART114 Physical sciences01 natural sciencesrenormalizationHigh Energy Physics - ExperimentRenormalizationHigh Energy Physics - Experiment (hep-ex)High Energy Physics - Phenomenology (hep-ph)RAPIDITY0103 physical sciencesSCATTERINGRapidityResummationPROBE010306 general physicsNLO JET VERTEXQCD POMERONBFKLPhysicsQuantum chromodynamicsliikeoppiLarge Hadron Colliderta114010308 nuclear & particles physicsPhysicsscatteringHigh Energy Physics::PhenomenologydijetHigh Energy Physics - PhenomenologykinematicsresummationTEVHigh Energy Physics::Experimentviolationhadronquantym chromodynamicsBDKL equationAPPROXIMATION
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Dijet studies with ALICE at the LHC

2020

Relativistisissa hiukkastörmäyksissä syntyvistä suurenergisistä kvarkeista ja gluoneista, eli partoneista, muodostuvaa hyvin kollimoitunutta hiukkassuihkua kutsutaan jetiksi. Jettien tutkimusta on tehty jo vuosikaudet ja se hallitaan hyvin myös raskasionitörmäyksissä, joissa muodostuvaa kvarkkigluoniplasmaa on pystytty tutkimaan jettien liikemäärähäviöiden avulla. Tämän perusteella on huomattu, että kvarkkigluoniplasma jarruttaa sen läpi kulkevia suurenergisiä partoneita. Jettien lisäksi partonien energiahäviöitä raskasionitörmäyksessä on tutkittu myös dijettien avulla. Dijetti on määritelty törmäyksen kahdesta suurimman energian omaavasta jetistä muodostuvaksi systeemiksi. Aiempien RHIC- j…

jettien rekonstruktioALICEdijetin massarelativistinen raskasionitörmäysHigh Energy Physics::PhenomenologyenergiahäviöCERNHigh Energy Physics::ExperimentLHCNuclear ExperimentParticle Physics - Experiment
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