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A precise characterisation of the top quark electro-weak vertices at the ILC

Top quark production in the process $e^+e^- \rightarrow t\bar{t}$ at a future linear electron positron collider with polarised beams is a powerful tool to determine indirectly the scale of new physics. The presented study, based on a detailed simulation of the ILD detector concept, assumes a centre-...

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Detalles Bibliográficos
Autores principales: Amjad, M.S., Bilokin, S., Boronat, M., Doublet, P., Frisson, T., García, I.García, Perelló, M., Pöschl, R., Richard, F., Ros, E., Rouëné, J., Ruiz Femenia, P., Vos, M.
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1140/epjc/s10052-015-3746-5
http://cds.cern.ch/record/2018118
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author Amjad, M.S.
Bilokin, S.
Boronat, M.
Doublet, P.
Frisson, T.
García, I.García
Perelló, M.
Pöschl, R.
Richard, F.
Ros, E.
Rouëné, J.
Ruiz Femenia, P.
Vos, M.
author_facet Amjad, M.S.
Bilokin, S.
Boronat, M.
Doublet, P.
Frisson, T.
García, I.García
Perelló, M.
Pöschl, R.
Richard, F.
Ros, E.
Rouëné, J.
Ruiz Femenia, P.
Vos, M.
author_sort Amjad, M.S.
collection CERN
description Top quark production in the process $e^+e^- \rightarrow t\bar{t}$ at a future linear electron positron collider with polarised beams is a powerful tool to determine indirectly the scale of new physics. The presented study, based on a detailed simulation of the ILD detector concept, assumes a centre-of-mass energy of $\sqrt{s}=500$ GeV and a luminosity of $\mathcal{L}=500\,\mbox{fb}^{-1} $ equally shared between the incoming beam polarisations of ${\cal P}_{e^-} , {\cal P}_{e^+} =\pm0.8,\mp0.3$. Events are selected in which the top pair decays semi-leptonically and the cross sections and the forward-backward asymmetries are determined. Based on these results, the vector, axial vector and tensorial $CP$ conserving couplings are extracted seperately for the photon and the $Z^0$ component. With the expected precision, a large number of models in which the top quark acts as a messenger to new physics can be distinguished with many standard deviations. This will dramatically improve expectation from e.g. LHC for electro-weak couplings of the top quark.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
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spelling cern-20181182023-05-27T09:06:27Zdoi:10.1140/epjc/s10052-015-3746-5http://cds.cern.ch/record/2018118engAmjad, M.S.Bilokin, S.Boronat, M.Doublet, P.Frisson, T.García, I.GarcíaPerelló, M.Pöschl, R.Richard, F.Ros, E.Rouëné, J.Ruiz Femenia, P.Vos, M.A precise characterisation of the top quark electro-weak vertices at the ILCParticle Physics - ExperimentTop quark production in the process $e^+e^- \rightarrow t\bar{t}$ at a future linear electron positron collider with polarised beams is a powerful tool to determine indirectly the scale of new physics. The presented study, based on a detailed simulation of the ILD detector concept, assumes a centre-of-mass energy of $\sqrt{s}=500$ GeV and a luminosity of $\mathcal{L}=500\,\mbox{fb}^{-1} $ equally shared between the incoming beam polarisations of ${\cal P}_{e^-} , {\cal P}_{e^+} =\pm0.8,\mp0.3$. Events are selected in which the top pair decays semi-leptonically and the cross sections and the forward-backward asymmetries are determined. Based on these results, the vector, axial vector and tensorial $CP$ conserving couplings are extracted seperately for the photon and the $Z^0$ component. With the expected precision, a large number of models in which the top quark acts as a messenger to new physics can be distinguished with many standard deviations. This will dramatically improve expectation from e.g. LHC for electro-weak couplings of the top quark.Top quark production in the process $e^+e^- \rightarrow t\bar{t}$ at a future linear electron positron collider with polarised beams is a powerful tool to determine indirectly the scale of new physics. The presented study, based on a detailed simulation of the ILD detector concept, assumes a centre-of-mass energy of $ \sqrt{s} =500$  GeV and a luminosity of $\mathcal {L}=500\, \text{ fb }^{-1} $ equally shared between the incoming beam polarisations of $ \mathcal{P}_{e^-} , \mathcal{P}_{e^+} =\pm 0.8,\mp 0.3$ . Events are selected in which the top pair decays semi-leptonically and the cross sections and the forward–backward asymmetries are determined. Based on these results, the vector, axial vector and tensorial CP conserving couplings are extracted separately for the photon and the $Z^0$ component. With the expected precision, a large number of models in which the top quark acts as a messenger to new physics can be distinguished with many standard deviations. This will dramatically improve expectations from e.g. the LHC for electro-weak couplings of the top quark.Top quark production in the process $e^+e^- \to t\bar{t}$ at a future linear electron positron collider with polarised beams is a powerful tool to determine indirectly the scale of new physics. The presented study, based on a detailed simulation of the ILD detector concept, assumes a centre-of-mass energy of $\sqrt{s}=500\,$GeV and a luminosity of $\mathcal{L}=500\,{\rm fb}^{-1}$ equally shared between the incoming beam polarisations of $\mathcal{P}_{e^-}, \mathcal{P}_{e^+} =\pm0.8,\mp0.3$. Events are selected in which the top pair decays semi-leptonically and the cross sections and the forward-backward asymmetries are determined. Based on these results, the vector, axial vector and tensorial $CP$ conserving couplings are extracted separately for the photon and the $Z^0$ component. With the expected precision, a large number of models in which the top quark acts as a messenger to new physics can be distinguished with many standard deviations. This will dramatically improve expectations from e.g. the LHC for electro-weak couplings of the top quark.arXiv:1505.06020IFIC-15-15LAL-15-111IFIC-15-15LAL 15-111oai:cds.cern.ch:20181182015-05-22
spellingShingle Particle Physics - Experiment
Amjad, M.S.
Bilokin, S.
Boronat, M.
Doublet, P.
Frisson, T.
García, I.García
Perelló, M.
Pöschl, R.
Richard, F.
Ros, E.
Rouëné, J.
Ruiz Femenia, P.
Vos, M.
A precise characterisation of the top quark electro-weak vertices at the ILC
title A precise characterisation of the top quark electro-weak vertices at the ILC
title_full A precise characterisation of the top quark electro-weak vertices at the ILC
title_fullStr A precise characterisation of the top quark electro-weak vertices at the ILC
title_full_unstemmed A precise characterisation of the top quark electro-weak vertices at the ILC
title_short A precise characterisation of the top quark electro-weak vertices at the ILC
title_sort precise characterisation of the top quark electro-weak vertices at the ilc
topic Particle Physics - Experiment
url https://dx.doi.org/10.1140/epjc/s10052-015-3746-5
http://cds.cern.ch/record/2018118
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