Prospects for Measuring the Differential High P_1tnT B-jet Cross Section with the ATLAS Detector

Prospects for Measuring the Differential High P_1tnT B-jet Cross Section with the ATLAS Detector PDF Author: Kai Karsten Grybel
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Languages : en
Pages : 153

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Measurement of Differential Production Cross-sections for a Z Boson in Association with B-jets in 7 TeV Proton-proton Collisions with the ATLAS Detector

Measurement of Differential Production Cross-sections for a Z Boson in Association with B-jets in 7 TeV Proton-proton Collisions with the ATLAS Detector PDF Author:
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Languages : en
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We report measurements of differential production cross-sections of a Z boson in association with b-jets in pp collisions at √ s = 7 TeV. The data analysed correspond to an integrated luminosity of 4.6 fb-1 recorded with the ATLAS detector at the Large Hadron Collider. Particle-level cross-sections are determined for events with a Z boson decaying into an electron or muon pair, and containing b-jets. For events with at least one b-jet, the cross-section is presented as a function of the Z boson transverse momentum and rapidity, together with the inclusive b-jet cross-section as a function of b-jet transverse momentum, rapidity and angular separations between the b-jet and the Z boson. For events with at least two b-jets, the cross-section is determined as a function of the invariant mass and angular separation of the two highest transverse momentum b-jets, and as a function of the Z boson transverse momentum and rapidity. Lastly, results are compared to leading-order and next-to-leading-order perturbative QCD calculations.

Measurement of Three-jet Production Cross-sections in Pp Collisions at 7 TeV Centre-of-mass Energy Using the ATLAS Detector

Measurement of Three-jet Production Cross-sections in Pp Collisions at 7 TeV Centre-of-mass Energy Using the ATLAS Detector PDF Author:
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Languages : en
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Double-differential three-jet production cross-sections are measured in proton-proton collisions at a centre-of-mass energy of [arrow]" = 7TeV using the ATLAS detector at the large hadron collider. The measurements are presented as a function of the three-jet mass (mjjj), in bins of the sum of the absolute rapidity separations between the three leading jets).

Two B Or Not Two B-jets

Two B Or Not Two B-jets PDF Author: S. P. Bieniek
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Languages : en
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Measurement of Differential Di-photon Plus Jet Cross Sections Using the ATLAS Detector

Measurement of Differential Di-photon Plus Jet Cross Sections Using the ATLAS Detector PDF Author: Martin Florian Bessner
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Languages : en
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Measurement of Differential J/[psi] Production Cross Sections and Forward-backward Ratios in P + Pb Collisions with the ATLAS Detector

Measurement of Differential J/[psi] Production Cross Sections and Forward-backward Ratios in P + Pb Collisions with the ATLAS Detector PDF Author:
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Languages : en
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Measurements of differential cross sections for J/[psi] production in p+Pb collisions at [arrow]"NN=5.02 TeV at the CERN Large Hadron Collider with the ATLAS detector are presented. The data set used corresponds to an integrated luminosity of 28.1 nb-1. The J/[psi] mesons are reconstructed in the dimuon decay channel over the transverse momentum range 8

Measurements of the W Production Cross Sections in Association with Jets with the ATLAS Detector

Measurements of the W Production Cross Sections in Association with Jets with the ATLAS Detector PDF Author:
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Languages : en
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This study presents cross sections for the production of a W boson in association with jets, measured in proton-proton collisions at √s = 7 TeV with the ATLAS experiment at the large hadron collider. With an integrated luminosity of 4.6fb-1, this data set allows for an exploration of a large kinematic range, including jet production up to a transverse momentum of 1TeV and multiplicities up to seven associated jets. The production cross sections for W bosons are measured in both the electron and muon decay channels. Differential cross sections for many observables are also presented including measurements of the jet observables such as the rapidities and the transverse momenta as well as measurements of event observables such as the scalar sums of the transverse momenta of the jets. As a result, the measurements are compared to numerous QCD predictions including next-to-leading-order perturbative calculations, resummation calculations and Monte Carlo generators.

Measurement of the Production Cross Section of Jets in Association with a Z Boson in 8 TeV Proton-proton Collisions with the ATLAS Detector

Measurement of the Production Cross Section of Jets in Association with a Z Boson in 8 TeV Proton-proton Collisions with the ATLAS Detector PDF Author: Rodger Mantifel
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Languages : en
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"This thesis presents the measurement of the production cross sections of jets in association with a Z boson in proton-proton collisions at √s = 8 TeV with an integrated luminosity of 20.3 fb−1 recorded by the ATLAS experiment at the Large Hadron Collider at CERN. Inclusive and differential Z/[gamma]∗(→ e+e−)+jets cross sections are measured for jets with a transversemomentum pT(jet) > 30 GeV and rapidity |y(jet)| 4.4. Z boson candidates are identified by their decay into electron pairs. In order to stringently probe the modelling of Z/[gamma]∗+jets production by Monte Carlo generators in regions of high-pT phase space typical for Higgs boson decay and searches for new physics, events with high-pT final states are investigated. High-pT final states are defined as events with either pT(Z) 300 GeV or pT(leading jet) > 300 GeV. A set of four observables, sensitive to the topology of the event, are measured for the standard event selection as well as in the regions of high-pT phase space. The results from data are unfolded to particle level and compared to calculations of the matrix element from Monte Carlo generators Alpgen+Pythia and Sherpa interfaced to a parton shower. The results show that Sherpa tends to model Z/[gamma]∗+jets production in high-pT regions of phase space much better than Alpgen+Pythia." --

Physics with Jets in Association with a Z Boson in Pp-collisions with the ATLAS Detector at the Large Hadron Collider

Physics with Jets in Association with a Z Boson in Pp-collisions with the ATLAS Detector at the Large Hadron Collider PDF Author:
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ISBN:
Category :
Languages : en
Pages : 240

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This thesis presents the measurements of the production cross section of jets in association with a Z boson in pp-collisions at √s = 7 TeV with an integrated luminosity of ∫Ldt = 36-1 and ∫Ldt = 4.6 fb-1 recorded by the ATLAS experiment at the Large Hadron Collider in Geneva. Inclusive and differential Z(→e+e-) + jets cross sections are measured for jets with a transverse momentum pT(jet) > 30 GeV and rapidity |y(jet)|

Jet Calibration, Cross Section Measurements and New Physics Searches with the ATLAS Experiment Within the Run 2 Data

Jet Calibration, Cross Section Measurements and New Physics Searches with the ATLAS Experiment Within the Run 2 Data PDF Author: Robert Hankache
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Languages : en
Pages : 0

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The Standard Model is the current theory used to describe the elementary particles and their fundamental interactions (except the gravity). My PhD within the ATLAS experiment put this model under test using objects called jets, to study final state particles that interact through the strong force. First, I contributed to a method of jet calibration aiming at calibrating the energy scale of jets in the forward region of the detector with respect to central region. I improved the calibration by making it faster and more precise. Next, I worked on a search analysis of new physics using events with two jets. The Standard Model predicts a smooth distribution of the invariant mass of di-jets, hence we search for a bump which could come from a new particle. Since no significant bump is found, we put limits on signals as predicted by Beyond Standard Model theories and on model-independent signals. Last, I developed a new physics analysis measuring the leading (highest in transverse momentum) jet differential cross-section as a function of transverse momentum and rapidity. The challenge was to factorize the detector effects (resolution and acceptance) from the observable, which I did using a new unfolding technique. I also worked on the theoretical predictions calculation which was very challenging to perform and needed the implementation of special regularizations. The measurement and the predictions are then compared and tensions are observed due to the difficulties of theoretical predictions calculation.