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Measurement of spin correlations in $t\bar{t}$ events from $pp$ collisions at $\sqrt{s}$ = 7 TeV in the lepton + jets final state with the ATLAS detector
The top quark decays before it hadronises. Before its spin state can be changed in a process of strong interaction, it is directly transferred to the top quark decay products. The top quark spin can be deduced by studying angular distributions of the decay products. The Standard Model predicts the t...
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Lenguaje: | eng |
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2014
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Acceso en línea: | http://cds.cern.ch/record/1757585 |
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author | Lemmer, Boris |
author_facet | Lemmer, Boris |
author_sort | Lemmer, Boris |
collection | CERN |
description | The top quark decays before it hadronises. Before its spin state can be changed in a process of strong interaction, it is directly transferred to the top quark decay products. The top quark spin can be deduced by studying angular distributions of the decay products. The Standard Model predicts the top/anti-top quark ($t\bar{t}$) pairs to have correlated spins. The degree is sensitive to the spin and the production mechanisms of the top quark. Measuring the spin correlation allows to test the predictions. New physics effects can be reflected in deviations from the prediction. In this thesis the spin correlation of $t\bar{t}$ pairs, produced at a centre-of-mass energy of $\sqrt{s} = 7\,$TeV and reconstructed with the ATLAS detector, is measured. The dataset corresponds to an integrated luminosity of $4.6~\text{fb}^{-1}$. $t\bar{t}$ pairs are reconstructed in the $\ell$+jets channel using a kinematic likelihood fit offering the identification of light up- and down-type quarks from the $t \rightarrow bW \rightarrow bq\bar{q}'$ decay. The spin correlation is measured via the distribution of the azimuthal angle $\Delta\phi$ between two top quark spin analyzers in the laboratory frame. It is expressed as the degree of $t\bar{t}$ spin correlation predicted by the Standard Model, $f_{\text{SM}}$. The results of \begin{align*} &f_{\text{SM}}( \Delta\phi(\text{charged lepton, down-type quark} )) &= 1.53 \pm 0.14\,\text{(stat.)} \pm 0.32\,\text{(syst.)}, \\ &f_{\text{SM}} ( \Delta\phi(\text{charged lepton, b-quark} )) &= 0.53 \pm 0.18\,\text{(stat.)} \pm 0.49\,\text{(syst.)}, \\ &f_{\text{SM}} ( \Delta\phi(\text{combined})) &= 1.12 \pm 0.11\,\text{(stat.)} \pm 0.22\,\text{(syst.)}, \end{align*} are consistent with the Standard Model prediction of $f_{\text{SM}}= 1.0$. |
id | cern-1757585 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2014 |
record_format | invenio |
spelling | cern-17575852021-07-15T21:47:45Zhttp://cds.cern.ch/record/1757585engLemmer, BorisMeasurement of spin correlations in $t\bar{t}$ events from $pp$ collisions at $\sqrt{s}$ = 7 TeV in the lepton + jets final state with the ATLAS detectorParticle Physics - ExperimentThe top quark decays before it hadronises. Before its spin state can be changed in a process of strong interaction, it is directly transferred to the top quark decay products. The top quark spin can be deduced by studying angular distributions of the decay products. The Standard Model predicts the top/anti-top quark ($t\bar{t}$) pairs to have correlated spins. The degree is sensitive to the spin and the production mechanisms of the top quark. Measuring the spin correlation allows to test the predictions. New physics effects can be reflected in deviations from the prediction. In this thesis the spin correlation of $t\bar{t}$ pairs, produced at a centre-of-mass energy of $\sqrt{s} = 7\,$TeV and reconstructed with the ATLAS detector, is measured. The dataset corresponds to an integrated luminosity of $4.6~\text{fb}^{-1}$. $t\bar{t}$ pairs are reconstructed in the $\ell$+jets channel using a kinematic likelihood fit offering the identification of light up- and down-type quarks from the $t \rightarrow bW \rightarrow bq\bar{q}'$ decay. The spin correlation is measured via the distribution of the azimuthal angle $\Delta\phi$ between two top quark spin analyzers in the laboratory frame. It is expressed as the degree of $t\bar{t}$ spin correlation predicted by the Standard Model, $f_{\text{SM}}$. The results of \begin{align*} &f_{\text{SM}}( \Delta\phi(\text{charged lepton, down-type quark} )) &= 1.53 \pm 0.14\,\text{(stat.)} \pm 0.32\,\text{(syst.)}, \\ &f_{\text{SM}} ( \Delta\phi(\text{charged lepton, b-quark} )) &= 0.53 \pm 0.18\,\text{(stat.)} \pm 0.49\,\text{(syst.)}, \\ &f_{\text{SM}} ( \Delta\phi(\text{combined})) &= 1.12 \pm 0.11\,\text{(stat.)} \pm 0.22\,\text{(syst.)}, \end{align*} are consistent with the Standard Model prediction of $f_{\text{SM}}= 1.0$.Das Top-Quark zerfällt, bevor es hadronisiert. Bevor die Spin-Konfiguration des Top-Quarks durch Prozesse der Starken Wechselwirkung geändert werden kann, wird sie direkt an die Zerfallsprodukte des Top-Quarks weitergegeben. Rückschl usse auf den Spin des Top-Quarks können über Winkelverteilungen der Zerfallsprodukte gezogen werden. Die Spins von Top-/Anti-Top-Quark (tt) Paaren sind, gemäß der Vorhersage durch das Standardmodell, korreliert. Der Grad der Korrelation ist sensitiv auf den Spin und die Produktionsmechanismen des Top-Quarks. Die Messung der Spin-Korrelation bietet einen Test der Vorhersagen. Effekte von Physik jenseits des Standardmodells können sich in Abweichungen der vorhergesagten Spin-Korrelation manifestieren. In dieser Arbeit wird die Spin-Korrelation von Top-Quark Paaren, die bei einer Schwerpunktsenergie von sqrt(s) = 7 TeV produziert und mit dem ATLAS Detektor rekonstruiert wurden, gemessen. Der Datensatz entspricht einer integrierten Luminosität von 4.6 fb-1. Die Top-Quarks wurden im Lepton+Jets Zerfallskanal mittels eines kinematischen Likelihood-Fits, der eine Trennung der leichten up- und down-Typ Quarks aus dem t->bW->bqq Zerfall erlaubt, rekonstruiert. Die Spin-Korrelation wird über die Verteilung des Azimutalwinkels zwischen zwei Top-Quark Spin-Analysatoren im Laborsystem gemessen. Sie wird als Grad fSM der Spin-Korrelation, wie sie im Rahmen des Standardmodells berechnet wird, angegeben. Die Messungen ergeben fSM(DeltaPhi(geladenes Lepton, down-Typ Quark)) = 1.53 ± 0.14 (stat.) ± 0.32 (syst.); fSM(DeltaPhi(geladenes Lepton, b-Quark)) = 0.53 ± 0.18 (stat.) ± 0.49 (syst.); fSM(DeltaPhi(kombiniert)) = 1.12 ± 0.11 (stat.) ± 0.22 (syst.). Die Ergebnisse stimmen mit der Berechnung im Rahmen des Standardmodells, fSM = 1.0, überein.The top quark decays before it hadronises. Before its spin state can be changed in a process of strong interaction, it is directly transferred to the top quark decay products. The top quark spin can be deduced by studying angular distributions of the decay products. The Standard Model predicts the top/anti-top quark ($t\bar{t}$) pairs to have correlated spins. The degree is sensitive to the spin and the production mechanisms of the top quark. Measuring the spin correlation allows to test the predictions. New physics effects can be reflected in deviations from the prediction. In this thesis the spin correlation of $t\bar{t}$ pairs, produced at a centre-of-mass energy of $\sqrt{s} = 7\,$TeV and reconstructed with the ATLAS detector, is measured. The dataset corresponds to an integrated luminosity of $4.6~\text{fb}^{-1}$. $t\bar{t}$ pairs are reconstructed in the $\ell$+jets channel using a kinematic likelihood fit offering the identification of light up- and down-type quarks from the $t \rightarrow bW \rightarrow bq\bar{q}'$ decay. The spin correlation is measured via the distribution of the azimuthal angle $\Delta\phi$ between two top quark spin analyzers in the laboratory frame. It is expressed as the degree of $t\bar{t}$ spin correlation predicted by the Standard Model, $f^{\text{SM}}$. The results of \begin{align*} &f^{\text{SM}}( \Delta\phi(\text{charged lepton, down-type quark} )) &= 1.53 \pm 0.14\,\text{(stat.)} \pm 0.32\,\text{(syst.)}, \\ &f^{\text{SM}} ( \Delta\phi(\text{charged lepton, b-quark} )) &= 0.53 \pm 0.18\,\text{(stat.)} \pm 0.49\,\text{(syst.)}, \\ &f^{\text{SM}} ( \Delta\phi(\text{combined})) &= 1.12 \pm 0.11\,\text{(stat.)} \pm 0.22\,\text{(syst.)}, \end{align*} are consistent with the Standard Model prediction of $f^{\text{SM}}= 1.0$.arXiv:1410.1791II.Physik-UniGö-Diss-2014/02CERN-THESIS-2014-129oai:cds.cern.ch:17575852014-10-05 |
spellingShingle | Particle Physics - Experiment Lemmer, Boris Measurement of spin correlations in $t\bar{t}$ events from $pp$ collisions at $\sqrt{s}$ = 7 TeV in the lepton + jets final state with the ATLAS detector |
title | Measurement of spin correlations in $t\bar{t}$ events from $pp$ collisions at $\sqrt{s}$ = 7 TeV in the lepton + jets final state with the ATLAS detector |
title_full | Measurement of spin correlations in $t\bar{t}$ events from $pp$ collisions at $\sqrt{s}$ = 7 TeV in the lepton + jets final state with the ATLAS detector |
title_fullStr | Measurement of spin correlations in $t\bar{t}$ events from $pp$ collisions at $\sqrt{s}$ = 7 TeV in the lepton + jets final state with the ATLAS detector |
title_full_unstemmed | Measurement of spin correlations in $t\bar{t}$ events from $pp$ collisions at $\sqrt{s}$ = 7 TeV in the lepton + jets final state with the ATLAS detector |
title_short | Measurement of spin correlations in $t\bar{t}$ events from $pp$ collisions at $\sqrt{s}$ = 7 TeV in the lepton + jets final state with the ATLAS detector |
title_sort | measurement of spin correlations in $t\bar{t}$ events from $pp$ collisions at $\sqrt{s}$ = 7 tev in the lepton + jets final state with the atlas detector |
topic | Particle Physics - Experiment |
url | http://cds.cern.ch/record/1757585 |
work_keys_str_mv | AT lemmerboris measurementofspincorrelationsintbarteventsfromppcollisionsatsqrts7tevintheleptonjetsfinalstatewiththeatlasdetector |