A search for massive resonances decaying to top quark pairs and jet trigger performance studies with the ATLAS detector at the Large Hadron Collider
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Mathematisch-Naturwissenschaftliche Fakultät I
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Abstract
Diese Arbeit behandelt die Suche nach neuen Teilchen, die in Top-Quark-Paare zerfallen (t¯t). Die Analyse beruht auf Daten des ATLAS-Experiments von Proton- Proton-Kollisionen am LHC bei einer Schwerpunktsenergie von p s = 7 TeV und einer Gesamtluminosität von 2.05 fb−1. Hierzu wird der Lepton+Jets Endzustand im t¯t ! WbWb Zerfallskanal verwendet, worin ein W-Boson leptonisch und das andere hadronisch zerfällt. Das t¯t -Ereignis wird sowohl in aufgelösten als auch geboosteten Zerfallstopologien rekonstruiert. Zum ersten Mal werden die Korrelationen beider Kanäle in Form einer dritten Kategorie nutzbar gemacht, welche aus Ereignissen besteht, die in beiden Topologien selektiert wurden. Die Sensitivität der Analyse wird hierdurch erhöht. Obere Schranken bei 95% Vertrauensniveau auf den Wirkungsquerschnitt multipliziert mit der Zerfallsbreite für massive Zustände großer und kleiner Zerfallsbreite werden berechnet. Diese werden aus der Kombination der beiden Ansätze der t¯t -Rekonstruktion gewonnen. Für die Z0-Resonanz kleiner Breite reicht die beobachtete (erwartete) obere Grenze auf den Wirkungsquerschnitt von 4.85 (4.81) pb, für eine Masse von 0.6 TeV, bis 0.21 (0.13) pb, für eine Masse von 2 TeV. Eine schmale leptophobische Topcolor-Z0-Resonanzen mit einer Masse unterhalb von 1.3 TeV kann ausgeschlossen werden. Weiterhin konnten beobachtete (erwartete) obere Grenzen auch für eine breite Farboktett-Resonanz berechnet werden. Diese liegen zwischen 2.52 (2.59) pb und 0.37 (0.27) pb für Massen von 0.7 TeV bzw. 2 TeV. Breite Kaluza-Klein-Gluon-Resonanzen mit einer Masse unter 1.65 TeV können ausgeschlossen werden.
This thesis presents the search for new particles that decay into top quark pairs (t¯t). The analysis is performed with the ATLAS experiment at the LHC, using an integrated luminosity of 2.05 fb−1 of proton–proton collision data, collected at a center-of-mass energy of p s = 7 TeV. The lepton plus jets final state is used in the t¯t ! WbWb decay, where one W boson decays leptonically and the other hadronically. The t¯t system is reconstructed using both resolved and boosted topologies of the top-quark decay. For the first time, correlations between the two search channels have been employed by creating a third channel with the events selected by both analyses. The sensitivity to new physics phenomena is thereby improved. Upper limits are derived on the production cross-section times branching ratio for narrow and wide massive states, at the 95 % confidence level. These are extracted by combining the two approaches of the t¯t reconstruction. For a narrow Z0 resonance, the observed (expected) upper limits range from 4.85 (4.81) pb for a mass of 0.6 TeV, to 0.21 (0.13) pb for a mass of 2 TeV. A narrow leptophobic topcolor Z0 resonance with a mass below 1.3 TeV is excluded. Observed (expected) limits are also derived for a broad color-octet resonance. They vary between 2.52 (2.59) pb and 0.37 (0.27) pb for a mass of 0.7 TeV and 2 TeV, respectively. The wide Kaluza-Klein gluon with a mass below 1.65 TeV is excluded. Another aspect of this thesis are performance studies of the level-1 jet trigger. Trigger efficiencies have been measured, using data collected by the ATLAS detector in 2010 at p s = 7 TeV. The turn-on curves obtained for a variety of jet triggers, showed good agreement between data and simulation in the plateau region. The efficiency results were used at the first stage of analyses for multi-jet cross-section measurements.
This thesis presents the search for new particles that decay into top quark pairs (t¯t). The analysis is performed with the ATLAS experiment at the LHC, using an integrated luminosity of 2.05 fb−1 of proton–proton collision data, collected at a center-of-mass energy of p s = 7 TeV. The lepton plus jets final state is used in the t¯t ! WbWb decay, where one W boson decays leptonically and the other hadronically. The t¯t system is reconstructed using both resolved and boosted topologies of the top-quark decay. For the first time, correlations between the two search channels have been employed by creating a third channel with the events selected by both analyses. The sensitivity to new physics phenomena is thereby improved. Upper limits are derived on the production cross-section times branching ratio for narrow and wide massive states, at the 95 % confidence level. These are extracted by combining the two approaches of the t¯t reconstruction. For a narrow Z0 resonance, the observed (expected) upper limits range from 4.85 (4.81) pb for a mass of 0.6 TeV, to 0.21 (0.13) pb for a mass of 2 TeV. A narrow leptophobic topcolor Z0 resonance with a mass below 1.3 TeV is excluded. Observed (expected) limits are also derived for a broad color-octet resonance. They vary between 2.52 (2.59) pb and 0.37 (0.27) pb for a mass of 0.7 TeV and 2 TeV, respectively. The wide Kaluza-Klein gluon with a mass below 1.65 TeV is excluded. Another aspect of this thesis are performance studies of the level-1 jet trigger. Trigger efficiencies have been measured, using data collected by the ATLAS detector in 2010 at p s = 7 TeV. The turn-on curves obtained for a variety of jet triggers, showed good agreement between data and simulation in the plateau region. The efficiency results were used at the first stage of analyses for multi-jet cross-section measurements.
Description
Keywords
ATLAS, LHC, Top quark, resonance, LHC, Top quark, resonances, Atlas
Dewey Decimal Classification
530 Physik
Citation
Fajardo, Luz Stella Gomez.(2014). A search for massive resonances decaying to top quark pairs and jet trigger performance studies with the ATLAS detector at the Large Hadron Collider. 10.18452/17083