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Non-resonant New Physics in Top Pair Production at Hadron Colliders

We use top quark pair production as a probe of top-philic non-resonant new physics. Following a low energy effective field theory approach, we calculate several key observables in top quark pair production at hadron colliders (e.g., total cross section, ttbar invariant mass distribution, forward-bac...

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Autores principales: Degrande, Celine, Gerard, Jean-Marc, Grojean, Christophe, Maltoni, Fabio, Servant, Geraldine
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: JHEP 2010
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP03(2011)125
http://cds.cern.ch/record/1303855
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author Degrande, Celine
Gerard, Jean-Marc
Grojean, Christophe
Maltoni, Fabio
Servant, Geraldine
author_facet Degrande, Celine
Gerard, Jean-Marc
Grojean, Christophe
Maltoni, Fabio
Servant, Geraldine
author_sort Degrande, Celine
collection CERN
description We use top quark pair production as a probe of top-philic non-resonant new physics. Following a low energy effective field theory approach, we calculate several key observables in top quark pair production at hadron colliders (e.g., total cross section, ttbar invariant mass distribution, forward-backward asymmetry, spin correlations) including the interference of the Standard Model with dimension-six operators. We determine the LHC reach in probing new physics after having taken into account the Tevatron constraints. In particular, we show that the gluon fusion process gg -> ttbar which remains largely unconstrained at the Tevatron is affected by only one top-philic dimension-six operator, the chromo-magnetic moment of the top quark. This operator can be further constrained by the LHC data as soon as a precision of about 20% is reached for the total ttbar cross-section. While our approach is general and model-independent, it is particularly relevant to models of Higgs and top compositeness, which we consider in detail, also in connection with ttbar ttbar and ttbar bbbar production.
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spelling cern-13038552020-09-05T02:14:52Z doi:10.1007/JHEP03(2011)125 http://cds.cern.ch/record/1303855 eng Degrande, Celine Gerard, Jean-Marc Grojean, Christophe Maltoni, Fabio Servant, Geraldine Non-resonant New Physics in Top Pair Production at Hadron Colliders Particle Physics - Phenomenology We use top quark pair production as a probe of top-philic non-resonant new physics. Following a low energy effective field theory approach, we calculate several key observables in top quark pair production at hadron colliders (e.g., total cross section, ttbar invariant mass distribution, forward-backward asymmetry, spin correlations) including the interference of the Standard Model with dimension-six operators. We determine the LHC reach in probing new physics after having taken into account the Tevatron constraints. In particular, we show that the gluon fusion process gg -> ttbar which remains largely unconstrained at the Tevatron is affected by only one top-philic dimension-six operator, the chromo-magnetic moment of the top quark. This operator can be further constrained by the LHC data as soon as a precision of about 20% is reached for the total ttbar cross-section. While our approach is general and model-independent, it is particularly relevant to models of Higgs and top compositeness, which we consider in detail, also in connection with ttbar ttbar and ttbar bbbar production. We use top quark pair production as a probe of top-philic non-resonant new physics. Following a low energy effective field theory approach, we calculate several key observables in top quark pair production at hadron colliders (e.g., total cross section, ttbar invariant mass distribution, forward-backward asymmetry, spin correlations) including the interference of the Standard Model with dimension-six operators. We determine the LHC reach in probing new physics after having taken into account the Tevatron constraints. In particular, we show that the gluon fusion process gg -> ttbar which remains largely unconstrained at the Tevatron is affected by only one top-philic dimension-six operator, the chromo-magnetic moment of the top quark. This operator can be further constrained by the LHC data as soon as a precision of about 20% is reached for the total ttbar cross-section. While our approach is general and model-independent, it is particularly relevant to models of Higgs and top compositeness, which we consider in detail, also in connection with ttbar ttbar and ttbar bbbar production. info:eu-repo/grantAgreement/EC/FP7/226371 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/1303855 JHEP JHEP, (2011) pp. 125 2010-11-01
spellingShingle Particle Physics - Phenomenology
Degrande, Celine
Gerard, Jean-Marc
Grojean, Christophe
Maltoni, Fabio
Servant, Geraldine
Non-resonant New Physics in Top Pair Production at Hadron Colliders
title Non-resonant New Physics in Top Pair Production at Hadron Colliders
title_full Non-resonant New Physics in Top Pair Production at Hadron Colliders
title_fullStr Non-resonant New Physics in Top Pair Production at Hadron Colliders
title_full_unstemmed Non-resonant New Physics in Top Pair Production at Hadron Colliders
title_short Non-resonant New Physics in Top Pair Production at Hadron Colliders
title_sort non-resonant new physics in top pair production at hadron colliders
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1007/JHEP03(2011)125
http://cds.cern.ch/record/1303855
http://cds.cern.ch/record/1303855
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AT maltonifabio nonresonantnewphysicsintoppairproductionathadroncolliders
AT servantgeraldine nonresonantnewphysicsintoppairproductionathadroncolliders