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Precision measurements of the top quark couplings at the FCC

The design study of the Future Circular Colliders (FCC) in a 100-km ring in the Geneva area has started at CERN at the beginning of 2014, as an option for post-LHC particle accelerators. The study has an emphasis on proton-proton and electron-positron high-energy frontier machines. In the current pl...

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Autor principal: Janot, Patrick
Lenguaje:eng
Publicado: SISSA 2015
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.234.0333
http://cds.cern.ch/record/2063828
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author Janot, Patrick
author_facet Janot, Patrick
author_sort Janot, Patrick
collection CERN
description The design study of the Future Circular Colliders (FCC) in a 100-km ring in the Geneva area has started at CERN at the beginning of 2014, as an option for post-LHC particle accelerators. The study has an emphasis on proton-proton and electron-positron high-energy frontier machines. In the current plans, the first step of the FCC physics programme would exploit a high-luminosity e+e- collider called FCC-ee, with centre-of-mass energies ranging from below the Z pole to the t-tbar threshold and beyond, followed by 100\,TeV proton-proton collisions as ultimate goal. When combined, these two steps offer a large palette of complementary measurements and sensitivity for new physics. In particular, the association of the FCC-ee and the FCC-hh allows measurements of the top-quark electroweak and Yukawa couplings to be performed with unrivaled precision.
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institution Organización Europea para la Investigación Nuclear
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spelling cern-20638282022-08-10T13:07:37Zdoi:10.22323/1.234.0333http://cds.cern.ch/record/2063828engJanot, PatrickPrecision measurements of the top quark couplings at the FCCParticle Physics - ExperimentThe design study of the Future Circular Colliders (FCC) in a 100-km ring in the Geneva area has started at CERN at the beginning of 2014, as an option for post-LHC particle accelerators. The study has an emphasis on proton-proton and electron-positron high-energy frontier machines. In the current plans, the first step of the FCC physics programme would exploit a high-luminosity e+e- collider called FCC-ee, with centre-of-mass energies ranging from below the Z pole to the t-tbar threshold and beyond, followed by 100\,TeV proton-proton collisions as ultimate goal. When combined, these two steps offer a large palette of complementary measurements and sensitivity for new physics. In particular, the association of the FCC-ee and the FCC-hh allows measurements of the top-quark electroweak and Yukawa couplings to be performed with unrivaled precision.The design study of the Future Circular Colliders (FCC) in a 100-km ring in the Geneva area has started at CERN at the beginning of 2014, as an option for post-LHC particle accelerators. The study has an emphasis on proton-proton and electron-positron high-energy frontier machines. In the current plans, the first step of the FCC physics programme would exploit a high-luminosity e+e- collider called FCC-ee, with centre-of-mass energies ranging from below the Z pole to the t-tbar threshold and beyond, followed by 100\,TeV proton-proton collisions as ultimate goal. When combined, these two steps offer a large palette of complementary measurements and sensitivity for new physics. In particular, the association of the FCC-ee and the FCC-hh allows measurements of the top-quark electroweak and Yukawa couplings to be performed with unrivaled precision.SISSAarXiv:1510.09056oai:cds.cern.ch:20638282015-10-30
spellingShingle Particle Physics - Experiment
Janot, Patrick
Precision measurements of the top quark couplings at the FCC
title Precision measurements of the top quark couplings at the FCC
title_full Precision measurements of the top quark couplings at the FCC
title_fullStr Precision measurements of the top quark couplings at the FCC
title_full_unstemmed Precision measurements of the top quark couplings at the FCC
title_short Precision measurements of the top quark couplings at the FCC
title_sort precision measurements of the top quark couplings at the fcc
topic Particle Physics - Experiment
url https://dx.doi.org/10.22323/1.234.0333
http://cds.cern.ch/record/2063828
work_keys_str_mv AT janotpatrick precisionmeasurementsofthetopquarkcouplingsatthefcc