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Topics in the measurement of top quark events with ATLAS : pixel detector optoelectronics, track impact parameter calibration, acceptance correction methods / vorgelegt von Stephan A. Sandvoss. 2009
Inhalt
Contents
Preface
1 Introduction
2 Theoretical Overview
2.1 The Standard Model of Particle Physics
2.2 Top Quark Physics
2.3 Monte Carlo Generators
3 LHC and ATLAS
3.1 The Large Hadron Collider (LHC)
3.2 The ATLAS Experiment
3.2.1 The Muon System
3.2.2 The Calorimeters
3.2.3 The Inner Detector
4 Optoelectronics of the Pixel Detector System
4.1 The Pixel Detector
4.2 The Pixel Detector Readout: The Optical Link
4.3 Production, Installation and Commissioning of Optoelectronics
4.3.1 Back Of Crate Cards
4.3.2 Optical Cables
5 Event Reconstruction
5.1 Tracking
5.2 Vertexing
5.3 Electrons and Photons
5.4 Missing Transverse Energy
5.5 Jets
6 Tuning of Track Impact Parameters for b-Tagging
6.1 b-Tagging
6.2 Adjustment Strategy
6.3 Performance and Tests
6.4 Alternatives
7 Systematic Uncertainties of Acceptance Corrections
7.1 Monte Carlo Simulation
7.2 Total and Differential Efficiencies
7.3 Reweighting of MC Events from (Pseudo) Data
7.4 Alternatives
8 Summary and Outlook
A Implementation/Plots of the Track Impact Parameter Tuning
A.1 Implementation of the Track Impact Parameter Mapping Approach
A.2 Plots of the Track Impact Parameter Mapping Approach
B Implementation/Plots of the Reweighting of top pair Events
B.1 Implementation of the Analysis and of the Reweighting
B.2 Plots of the Analysis and of the Reweighting
List of Figures
List of Tables
Glossary
Bibliography