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Top Quark Pair Production at a 500 GeV CLIC Collider

We present a study of the capability of a 500 GeV e+e− collider based on the CLIC technology for precision measurements of top quark properties. The analysis is based on full detector simulations of the CLIC ILD detector concept using Geant4, including realistic beam-induced background contributions...

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Detalles Bibliográficos
Autores principales: Seidel, K, Poss, S, Simon, F
Lenguaje:eng
Publicado: 2012
Materias:
Acceso en línea:http://cds.cern.ch/record/1443511
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author Seidel, K
Poss, S
Simon, F
author_facet Seidel, K
Poss, S
Simon, F
author_sort Seidel, K
collection CERN
description We present a study of the capability of a 500 GeV e+e− collider based on the CLIC technology for precision measurements of top quark properties. The analysis is based on full detector simulations of the CLIC ILD detector concept using Geant4, including realistic beam-induced background contributions from two photon processes. Event reconstruction is performed using a particle flow algorithm with stringent cuts to control the influence of background. The mass and width of the top quark are studied in fully-hadronic and semi-leptonic decays of tt ̄ pairs using event samples of signal and standard model background processes corresponding to an integrated luminosity of 100fb−1. Statistical uncertainties of the top mass of 0.08 GeV and 0.09 GeV were obtained for the fully-hadronic channel and the semi-leptonic channel, respectively. The results are compared to a similar analysis performed within the framework of the ILC, showing that a similar precision can be achieved at CLIC despite less favorable experimental conditions.
id cern-1443511
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2012
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spelling cern-14435112019-09-30T06:29:59Zhttp://cds.cern.ch/record/1443511engSeidel, KPoss, SSimon, FTop Quark Pair Production at a 500 GeV CLIC ColliderParticle Physics - Experiment We present a study of the capability of a 500 GeV e+e− collider based on the CLIC technology for precision measurements of top quark properties. The analysis is based on full detector simulations of the CLIC ILD detector concept using Geant4, including realistic beam-induced background contributions from two photon processes. Event reconstruction is performed using a particle flow algorithm with stringent cuts to control the influence of background. The mass and width of the top quark are studied in fully-hadronic and semi-leptonic decays of tt ̄ pairs using event samples of signal and standard model background processes corresponding to an integrated luminosity of 100fb−1. Statistical uncertainties of the top mass of 0.08 GeV and 0.09 GeV were obtained for the fully-hadronic channel and the semi-leptonic channel, respectively. The results are compared to a similar analysis performed within the framework of the ILC, showing that a similar precision can be achieved at CLIC despite less favorable experimental conditions.LCD-Note-2011-026oai:cds.cern.ch:14435112012
spellingShingle Particle Physics - Experiment
Seidel, K
Poss, S
Simon, F
Top Quark Pair Production at a 500 GeV CLIC Collider
title Top Quark Pair Production at a 500 GeV CLIC Collider
title_full Top Quark Pair Production at a 500 GeV CLIC Collider
title_fullStr Top Quark Pair Production at a 500 GeV CLIC Collider
title_full_unstemmed Top Quark Pair Production at a 500 GeV CLIC Collider
title_short Top Quark Pair Production at a 500 GeV CLIC Collider
title_sort top quark pair production at a 500 gev clic collider
topic Particle Physics - Experiment
url http://cds.cern.ch/record/1443511
work_keys_str_mv AT seidelk topquarkpairproductionata500gevcliccollider
AT posss topquarkpairproductionata500gevcliccollider
AT simonf topquarkpairproductionata500gevcliccollider