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Search for new physics using top quark pairs produced in associated with a boosted Z or Higgs boson in effective field theory
A data sample containing top quark pairs produced in association with a boosted Z or Higgs boson is used to search for signs of new physics. The data correspond to an integrated luminosity of $138~\mathrm{fb}^{-1}$ of proton-proton collisions produced at a center-of-mass energy of $13~\mathrm{TeV}$...
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2022
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Acceso en línea: | http://cds.cern.ch/record/2802060 |
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author | CMS Collaboration |
author_facet | CMS Collaboration |
author_sort | CMS Collaboration |
collection | CERN |
description | A data sample containing top quark pairs produced in association with a boosted Z or Higgs boson is used to search for signs of new physics. The data correspond to an integrated luminosity of $138~\mathrm{fb}^{-1}$ of proton-proton collisions produced at a center-of-mass energy of $13~\mathrm{TeV}$ at the LHC and collected by the CMS experiment. Selected collision events contain a single lepton and hadronic jets, including two identified with the decay of bottom quarks, plus an additional large-radius jet with high transverse momentum identified as a Z or Higgs boson candidate decaying to a bottom quark pair. Machine learning techniques are employed to discriminate between $\mathrm{t}\bar{\mathrm{t}}\mathrm{Z}$ or $\mathrm{t}\bar{\mathrm{t}}\mathrm{H}$ events and events from background processes, which are dominated by $\mathrm{t}\bar{\mathrm{t}}+\mbox{jets}$ production. The signal strengths of boosted $\mathrm{t}\bar{\mathrm{t}}\mathrm{Z}$ and $\mathrm{t}\bar{\mathrm{t}}\mathrm{H}$ processes are measured, and upper limits are placed on the $\mathrm{t}\bar{\mathrm{t}}\mathrm{Z}$ and $\mathrm{t}\bar{\mathrm{t}}\mathrm{H}$ differential cross sections as functions of the Z or Higgs boson transverse momentum. In addition, effects of physics beyond the standard model are probed using a framework in which the standard model is considered to be the low-energy effective field theory of a higher-scale theory. Eight possible dimension-six operators are added to the standard model Lagrangian and their corresponding coefficients are constrained via a fit to the data. |
id | cern-2802060 |
institution | Organización Europea para la Investigación Nuclear |
publishDate | 2022 |
record_format | invenio |
spelling | cern-28020602022-08-26T20:52:01Zhttp://cds.cern.ch/record/2802060CMS CollaborationSearch for new physics using top quark pairs produced in associated with a boosted Z or Higgs boson in effective field theoryParticle Physics - ExperimentA data sample containing top quark pairs produced in association with a boosted Z or Higgs boson is used to search for signs of new physics. The data correspond to an integrated luminosity of $138~\mathrm{fb}^{-1}$ of proton-proton collisions produced at a center-of-mass energy of $13~\mathrm{TeV}$ at the LHC and collected by the CMS experiment. Selected collision events contain a single lepton and hadronic jets, including two identified with the decay of bottom quarks, plus an additional large-radius jet with high transverse momentum identified as a Z or Higgs boson candidate decaying to a bottom quark pair. Machine learning techniques are employed to discriminate between $\mathrm{t}\bar{\mathrm{t}}\mathrm{Z}$ or $\mathrm{t}\bar{\mathrm{t}}\mathrm{H}$ events and events from background processes, which are dominated by $\mathrm{t}\bar{\mathrm{t}}+\mbox{jets}$ production. The signal strengths of boosted $\mathrm{t}\bar{\mathrm{t}}\mathrm{Z}$ and $\mathrm{t}\bar{\mathrm{t}}\mathrm{H}$ processes are measured, and upper limits are placed on the $\mathrm{t}\bar{\mathrm{t}}\mathrm{Z}$ and $\mathrm{t}\bar{\mathrm{t}}\mathrm{H}$ differential cross sections as functions of the Z or Higgs boson transverse momentum. In addition, effects of physics beyond the standard model are probed using a framework in which the standard model is considered to be the low-energy effective field theory of a higher-scale theory. Eight possible dimension-six operators are added to the standard model Lagrangian and their corresponding coefficients are constrained via a fit to the data.CMS-PAS-TOP-21-003oai:cds.cern.ch:28020602022 |
spellingShingle | Particle Physics - Experiment CMS Collaboration Search for new physics using top quark pairs produced in associated with a boosted Z or Higgs boson in effective field theory |
title | Search for new physics using top quark pairs produced in associated with a boosted Z or Higgs boson in effective field theory |
title_full | Search for new physics using top quark pairs produced in associated with a boosted Z or Higgs boson in effective field theory |
title_fullStr | Search for new physics using top quark pairs produced in associated with a boosted Z or Higgs boson in effective field theory |
title_full_unstemmed | Search for new physics using top quark pairs produced in associated with a boosted Z or Higgs boson in effective field theory |
title_short | Search for new physics using top quark pairs produced in associated with a boosted Z or Higgs boson in effective field theory |
title_sort | search for new physics using top quark pairs produced in associated with a boosted z or higgs boson in effective field theory |
topic | Particle Physics - Experiment |
url | http://cds.cern.ch/record/2802060 |
work_keys_str_mv | AT cmscollaboration searchfornewphysicsusingtopquarkpairsproducedinassociatedwithaboostedzorhiggsbosonineffectivefieldtheory |