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Searches for ttH (Multilepton+Diphoton) Production in ATLAS

After the discovery of a Higgs boson, the measurements of its properties are at the forefront of research. The determination of the associated production of a Higgs boson and a pair of top quarks is of particular importance as the ttH Yukawa coupling is large and thus an excellent probe for physics...

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Autor principal: Sopczak, Andre
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:http://cds.cern.ch/record/2239303
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author Sopczak, Andre
author_facet Sopczak, Andre
author_sort Sopczak, Andre
collection CERN
description After the discovery of a Higgs boson, the measurements of its properties are at the forefront of research. The determination of the associated production of a Higgs boson and a pair of top quarks is of particular importance as the ttH Yukawa coupling is large and thus an excellent probe for physics beyond the Standard Model (SM). For the complete LHC Run-1 dataset, the combined ATLAS and CMS signal strength (defined as the ratio of measured cross-section to the SM prediction) was $\mu=2.3^{+0.7}_{-0.6}$, which indicated a mild excess with respect to the SM expectation. The results of the ttH search with multilepton and diphoton signatures are presented for the first LHC Run-2 data (13~fb$^{-1}$ at 13 TeV) recorded by the ATLAS experiment: $\mu=2.5^{+1.3}_{-1.1}$ for the multilepton analyses and $\mu=-0.3^{+1.2}_{-1.0}$ for the diphoton analyses. Both measurements are in agreement with the SM expectation.
id cern-2239303
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
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spelling cern-22393032019-09-30T06:29:59Zhttp://cds.cern.ch/record/2239303engSopczak, AndreSearches for ttH (Multilepton+Diphoton) Production in ATLASParticle Physics - ExperimentAfter the discovery of a Higgs boson, the measurements of its properties are at the forefront of research. The determination of the associated production of a Higgs boson and a pair of top quarks is of particular importance as the ttH Yukawa coupling is large and thus an excellent probe for physics beyond the Standard Model (SM). For the complete LHC Run-1 dataset, the combined ATLAS and CMS signal strength (defined as the ratio of measured cross-section to the SM prediction) was $\mu=2.3^{+0.7}_{-0.6}$, which indicated a mild excess with respect to the SM expectation. The results of the ttH search with multilepton and diphoton signatures are presented for the first LHC Run-2 data (13~fb$^{-1}$ at 13 TeV) recorded by the ATLAS experiment: $\mu=2.5^{+1.3}_{-1.1}$ for the multilepton analyses and $\mu=-0.3^{+1.2}_{-1.0}$ for the diphoton analyses. Both measurements are in agreement with the SM expectation.ATL-PHYS-PROC-2016-277oai:cds.cern.ch:22393032016-12-16
spellingShingle Particle Physics - Experiment
Sopczak, Andre
Searches for ttH (Multilepton+Diphoton) Production in ATLAS
title Searches for ttH (Multilepton+Diphoton) Production in ATLAS
title_full Searches for ttH (Multilepton+Diphoton) Production in ATLAS
title_fullStr Searches for ttH (Multilepton+Diphoton) Production in ATLAS
title_full_unstemmed Searches for ttH (Multilepton+Diphoton) Production in ATLAS
title_short Searches for ttH (Multilepton+Diphoton) Production in ATLAS
title_sort searches for tth (multilepton+diphoton) production in atlas
topic Particle Physics - Experiment
url http://cds.cern.ch/record/2239303
work_keys_str_mv AT sopczakandre searchesfortthmultileptondiphotonproductioninatlas