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QCD at the Future Circular $\rm{e^{+}e^{-}}$ Collider

The Future Circular Collider in the $\mathrm{e^{+}e^{-}}$ configuration offers the opportunity to significantly improve SM measurements with dedicated runs at the Z-pole, WW threshold, ZH (240 GeV), and $\mathrm{t}\bar{\mathrm{t}}$ threshold. With a factor of approximately $10^{5}$ more statistics a...

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Autor principal: Ploerer, Eduardo
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:http://cds.cern.ch/record/2847526
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author Ploerer, Eduardo
author_facet Ploerer, Eduardo
author_sort Ploerer, Eduardo
collection CERN
description The Future Circular Collider in the $\mathrm{e^{+}e^{-}}$ configuration offers the opportunity to significantly improve SM measurements with dedicated runs at the Z-pole, WW threshold, ZH (240 GeV), and $\mathrm{t}\bar{\mathrm{t}}$ threshold. With a factor of approximately $10^{5}$ more statistics at the Z-pole and $10^{4}$ at the WW threshold than at LEP, the FCC-ee will enable the extraction of the strong coupling $\alpha_{s}$ at the per-mille level. Parton showering studies exploiting the pure gluon sample from $\mathrm{ZH}({\rightarrow} \mathrm{gg})$ will greatly improve our understanding of gluon radiation and fragmentation, directly impacting quark vs gluon discrimination studies. Further possibilities include precision hadronization studies and colour reconnection studies at the WW threshold. Some elements of the rich precision QCD program of the FCC-ee are outlined below.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
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spelling cern-28475262023-06-29T03:44:36Zhttp://cds.cern.ch/record/2847526engPloerer, EduardoQCD at the Future Circular $\rm{e^{+}e^{-}}$ Colliderhep-phParticle Physics - Phenomenologyhep-exParticle Physics - ExperimentThe Future Circular Collider in the $\mathrm{e^{+}e^{-}}$ configuration offers the opportunity to significantly improve SM measurements with dedicated runs at the Z-pole, WW threshold, ZH (240 GeV), and $\mathrm{t}\bar{\mathrm{t}}$ threshold. With a factor of approximately $10^{5}$ more statistics at the Z-pole and $10^{4}$ at the WW threshold than at LEP, the FCC-ee will enable the extraction of the strong coupling $\alpha_{s}$ at the per-mille level. Parton showering studies exploiting the pure gluon sample from $\mathrm{ZH}({\rightarrow} \mathrm{gg})$ will greatly improve our understanding of gluon radiation and fragmentation, directly impacting quark vs gluon discrimination studies. Further possibilities include precision hadronization studies and colour reconnection studies at the WW threshold. Some elements of the rich precision QCD program of the FCC-ee are outlined below.arXiv:2208.08250oai:cds.cern.ch:28475262022-08-17
spellingShingle hep-ph
Particle Physics - Phenomenology
hep-ex
Particle Physics - Experiment
Ploerer, Eduardo
QCD at the Future Circular $\rm{e^{+}e^{-}}$ Collider
title QCD at the Future Circular $\rm{e^{+}e^{-}}$ Collider
title_full QCD at the Future Circular $\rm{e^{+}e^{-}}$ Collider
title_fullStr QCD at the Future Circular $\rm{e^{+}e^{-}}$ Collider
title_full_unstemmed QCD at the Future Circular $\rm{e^{+}e^{-}}$ Collider
title_short QCD at the Future Circular $\rm{e^{+}e^{-}}$ Collider
title_sort qcd at the future circular $\rm{e^{+}e^{-}}$ collider
topic hep-ph
Particle Physics - Phenomenology
hep-ex
Particle Physics - Experiment
url http://cds.cern.ch/record/2847526
work_keys_str_mv AT ploerereduardo qcdatthefuturecircularrmeecollider