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Pair production of charged Higgs bosons at future linear e+e- colliders

In this paper, the pair production of charged Higgs bosons at possible future e+e- linear colliders is studied. Multi-jet final states are considered and the combinatorial, hadronic and genuine tbtb backgrounds are reduced thanks to a kinematical fit. TeV-class and multi-TeV linear colliders are lik...

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Detalles Bibliográficos
Autores principales: Battaglia, Marco, Ferrari, Arnaud, Kiiskinen, Ari, Maki, Tuula
Lenguaje:eng
Publicado: 2001
Materias:
Acceso en línea:http://cds.cern.ch/record/530015
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author Battaglia, Marco
Ferrari, Arnaud
Kiiskinen, Ari
Maki, Tuula
author_facet Battaglia, Marco
Ferrari, Arnaud
Kiiskinen, Ari
Maki, Tuula
author_sort Battaglia, Marco
collection CERN
description In this paper, the pair production of charged Higgs bosons at possible future e+e- linear colliders is studied. Multi-jet final states are considered and the combinatorial, hadronic and genuine tbtb backgrounds are reduced thanks to a kinematical fit. TeV-class and multi-TeV linear colliders are likely to be sensitive to charged Higgs bosons with masses up to about 350 GeV and 1.1 TeV respectively.
id cern-530015
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2001
record_format invenio
spelling cern-5300152023-03-14T18:02:00Zhttp://cds.cern.ch/record/530015engBattaglia, MarcoFerrari, ArnaudKiiskinen, AriMaki, TuulaPair production of charged Higgs bosons at future linear e+e- collidersParticle Physics - ExperimentIn this paper, the pair production of charged Higgs bosons at possible future e+e- linear colliders is studied. Multi-jet final states are considered and the combinatorial, hadronic and genuine tbtb backgrounds are reduced thanks to a kinematical fit. TeV-class and multi-TeV linear colliders are likely to be sensitive to charged Higgs bosons with masses up to about 350 GeV and 1.1 TeV respectively.In this paper, the pair production of charged Higgs bosons at possible future e+e- linear colliders is studied. Multi-jet final states are considered and the combinatorial, hadronic and genuine tbtb backgrounds are reduced thanks to a kinematical fit. TeV-class and multi-TeV linear colliders are likely to be sensitive to charged Higgs bosons with masses up to about 350 GeV and 1.0 TeV respectively.hep-ex/0112015SNOWMASS-2001-E3017oai:cds.cern.ch:5300152001-12-11
spellingShingle Particle Physics - Experiment
Battaglia, Marco
Ferrari, Arnaud
Kiiskinen, Ari
Maki, Tuula
Pair production of charged Higgs bosons at future linear e+e- colliders
title Pair production of charged Higgs bosons at future linear e+e- colliders
title_full Pair production of charged Higgs bosons at future linear e+e- colliders
title_fullStr Pair production of charged Higgs bosons at future linear e+e- colliders
title_full_unstemmed Pair production of charged Higgs bosons at future linear e+e- colliders
title_short Pair production of charged Higgs bosons at future linear e+e- colliders
title_sort pair production of charged higgs bosons at future linear e+e- colliders
topic Particle Physics - Experiment
url http://cds.cern.ch/record/530015
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AT ferrariarnaud pairproductionofchargedhiggsbosonsatfuturelineareecolliders
AT kiiskinenari pairproductionofchargedhiggsbosonsatfuturelineareecolliders
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