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Top-quark charge asymmetry and polarization in $t\bar{t}W^\pm$ production at the LHC

We study the charge asymmetry between the $t$ and $\bar t$ quark at the LHC, when they are produced in association with a $W$ boson. Though sizably reducing the cross section with respect to the inclusive production, requiring a $W$ boson in the final state has two important implications. First, at...

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Detalles Bibliográficos
Autores principales: Maltoni, F., Mangano, M.L., Tsinikos, I., Zaro, M.
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.physletb.2014.07.033
http://cds.cern.ch/record/1709014
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author Maltoni, F.
Mangano, M.L.
Tsinikos, I.
Zaro, M.
author_facet Maltoni, F.
Mangano, M.L.
Tsinikos, I.
Zaro, M.
author_sort Maltoni, F.
collection CERN
description We study the charge asymmetry between the $t$ and $\bar t$ quark at the LHC, when they are produced in association with a $W$ boson. Though sizably reducing the cross section with respect to the inclusive production, requiring a $W$ boson in the final state has two important implications. First, at leading order in QCD, $t \bar t W^{\pm}$ production can only occur via $q \bar q$ annihilation. As a result, the asymmetry between the $t$ and $\bar t$ generated at NLO in QCD is significantly larger than that of inclusive $t \bar t$ production, which is dominated by gluon fusion. Second, the top quarks tend to inherit the polarization of the initial-state quarks as induced by the $W$-boson emission. Hence, the decay products of the top quarks display a sizable asymmetry already at the leading order in QCD. We study the relevant distributions and their uncertainties in the standard model, compare them to those obtained in a simple axigluon model and discuss prospects for measurements at the LHC and beyond.
id cern-1709014
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
record_format invenio
spelling cern-17090142022-08-10T20:13:16Zdoi:10.1016/j.physletb.2014.07.033http://cds.cern.ch/record/1709014engMaltoni, F.Mangano, M.L.Tsinikos, I.Zaro, M.Top-quark charge asymmetry and polarization in $t\bar{t}W^\pm$ production at the LHCParticle Physics - PhenomenologyWe study the charge asymmetry between the $t$ and $\bar t$ quark at the LHC, when they are produced in association with a $W$ boson. Though sizably reducing the cross section with respect to the inclusive production, requiring a $W$ boson in the final state has two important implications. First, at leading order in QCD, $t \bar t W^{\pm}$ production can only occur via $q \bar q$ annihilation. As a result, the asymmetry between the $t$ and $\bar t$ generated at NLO in QCD is significantly larger than that of inclusive $t \bar t$ production, which is dominated by gluon fusion. Second, the top quarks tend to inherit the polarization of the initial-state quarks as induced by the $W$-boson emission. Hence, the decay products of the top quarks display a sizable asymmetry already at the leading order in QCD. We study the relevant distributions and their uncertainties in the standard model, compare them to those obtained in a simple axigluon model and discuss prospects for measurements at the LHC and beyond.We study the charge asymmetry between the t and t¯ quarks at the LHC, when they are produced in association with a W boson. Though sizably reducing the cross section with respect to the inclusive production, requiring a W boson in the final state has two important implications. First, at leading order in QCD, tt¯W± production can only occur via qq¯ annihilation. As a result, the asymmetry between the t and t¯ generated at NLO in QCD is significantly larger than that of inclusive tt¯ production, which is dominated by gluon fusion. Second, the top quarks tend to inherit the polarization of the initial-state quarks as induced by the W -boson emission. Hence, the decay products of the top quarks display a sizable asymmetry already at the leading order in QCD. We study the relevant distributions and their uncertainties in the standard model, compare them to those obtained in a simple axigluon model and discuss prospects for measurements at the LHC and beyond.We study the charge asymmetry between the $t$ and $\bar t$ quark at the LHC, when they are produced in association with a $W$ boson. Though sizably reducing the cross section with respect to the inclusive production, requiring a $W$ boson in the final state has two important implications. First, at leading order in QCD, $t \bar t W^{\pm}$ production can only occur via $q \bar q$ annihilation. As a result, the asymmetry between the $t$ and $\bar t$ generated at NLO in QCD is significantly larger than that of inclusive $t \bar t$ production, which is dominated by gluon fusion. Second, the top quarks tend to inherit the polarization of the initial-state quarks as induced by the $W$-boson emission. Hence, the decay products of the top quarks display a sizable asymmetry already at the leading order in QCD. We study the relevant distributions and their uncertainties in the standard model, compare them to those obtained in a simple axigluon model and discuss prospects for measurements at the LHC and beyond.arXiv:1406.3262CP3-14-23CERN-PH-TH-2014-102LPN14-075CP3-14-23CERN-PH-TH-2014-102LPN14-075 CP3-14-23LPN14-075oai:cds.cern.ch:17090142014-06-12
spellingShingle Particle Physics - Phenomenology
Maltoni, F.
Mangano, M.L.
Tsinikos, I.
Zaro, M.
Top-quark charge asymmetry and polarization in $t\bar{t}W^\pm$ production at the LHC
title Top-quark charge asymmetry and polarization in $t\bar{t}W^\pm$ production at the LHC
title_full Top-quark charge asymmetry and polarization in $t\bar{t}W^\pm$ production at the LHC
title_fullStr Top-quark charge asymmetry and polarization in $t\bar{t}W^\pm$ production at the LHC
title_full_unstemmed Top-quark charge asymmetry and polarization in $t\bar{t}W^\pm$ production at the LHC
title_short Top-quark charge asymmetry and polarization in $t\bar{t}W^\pm$ production at the LHC
title_sort top-quark charge asymmetry and polarization in $t\bar{t}w^\pm$ production at the lhc
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1016/j.physletb.2014.07.033
http://cds.cern.ch/record/1709014
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