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Precision Electroweak Measurements at FCC-ee

With the discovery of the Higgs boson at the LHC in 2012, all fundamental parameters of the Standard Model Theory (SMT) have been experimentally measured. Then the global fits of the electroweak sector provide a powerful test of the internal consistency of the SMT. Any observable sensitive to electr...

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Autor principal: Locci, Elizabeth
Lenguaje:eng
Publicado: SISSA 2020
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.364.0638
http://cds.cern.ch/record/2799802
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author Locci, Elizabeth
author_facet Locci, Elizabeth
author_sort Locci, Elizabeth
collection CERN
description With the discovery of the Higgs boson at the LHC in 2012, all fundamental parameters of the Standard Model Theory (SMT) have been experimentally measured. Then the global fits of the electroweak sector provide a powerful test of the internal consistency of the SMT. Any observable sensitive to electroweak corrections can be unambiguously predicted and any deviation of the measurements with respect to the predictions would reveal the existence of new, weakly interacting particles. Thus precision electroweak measurements are a key tool for constraining theories describing physics beyond the SMT. Although hadron colliders (Tevatron, LHC) have matched or occasionally exceeded the precision of LEP measurements, e+e- colliders are unrivalled for electroweak precision measurements. The expected performance of the future e+e- collider, FCC-ee, is discussed in the perspective of indirect discovery of new physics. This machine is nevertheless well-suited for direct discoveries as well.
id cern-2799802
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
publisher SISSA
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spelling cern-27998022022-01-18T21:36:48Zdoi:10.22323/1.364.0638http://cds.cern.ch/record/2799802engLocci, ElizabethPrecision Electroweak Measurements at FCC-eeParticle Physics - ExperimentWith the discovery of the Higgs boson at the LHC in 2012, all fundamental parameters of the Standard Model Theory (SMT) have been experimentally measured. Then the global fits of the electroweak sector provide a powerful test of the internal consistency of the SMT. Any observable sensitive to electroweak corrections can be unambiguously predicted and any deviation of the measurements with respect to the predictions would reveal the existence of new, weakly interacting particles. Thus precision electroweak measurements are a key tool for constraining theories describing physics beyond the SMT. Although hadron colliders (Tevatron, LHC) have matched or occasionally exceeded the precision of LEP measurements, e+e- colliders are unrivalled for electroweak precision measurements. The expected performance of the future e+e- collider, FCC-ee, is discussed in the perspective of indirect discovery of new physics. This machine is nevertheless well-suited for direct discoveries as well.SISSAoai:cds.cern.ch:27998022020
spellingShingle Particle Physics - Experiment
Locci, Elizabeth
Precision Electroweak Measurements at FCC-ee
title Precision Electroweak Measurements at FCC-ee
title_full Precision Electroweak Measurements at FCC-ee
title_fullStr Precision Electroweak Measurements at FCC-ee
title_full_unstemmed Precision Electroweak Measurements at FCC-ee
title_short Precision Electroweak Measurements at FCC-ee
title_sort precision electroweak measurements at fcc-ee
topic Particle Physics - Experiment
url https://dx.doi.org/10.22323/1.364.0638
http://cds.cern.ch/record/2799802
work_keys_str_mv AT loccielizabeth precisionelectroweakmeasurementsatfccee