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Rare exclusive hadronic W decays in a $t\bar{t}$ environment

The large cross section for t-tbar production at the LHC and at any future hadron collider provides a high-statistics and relatively clean environment for a study of W boson properties: after tagging on a leptonic decay of one of the Ws and the two b-jets, an additional W still remains in the event....

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Detalles Bibliográficos
Autores principales: Mangano, Michelangelo, Melia, Tom
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1140/epjc/s10052-015-3482-x
http://cds.cern.ch/record/1958071
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author Mangano, Michelangelo
Melia, Tom
author_facet Mangano, Michelangelo
Melia, Tom
author_sort Mangano, Michelangelo
collection CERN
description The large cross section for t-tbar production at the LHC and at any future hadron collider provides a high-statistics and relatively clean environment for a study of W boson properties: after tagging on a leptonic decay of one of the Ws and the two b-jets, an additional W still remains in the event. We study the prospect of making the first exclusive hadronic decay of a fundamental boson of the standard model, using the decay modes W to pi gamma and W to pi pi pi, and other related decays. By using strong isolation criteria, which we impose by searching for jets with a single particle constituent, we show that the three particle hadronic W decays have potential to be measured at the LHC. The possibility of measuring an involved spectrum of decay products could considerably expand our knowledge of how the W decays, and experimental techniques acquired in making these measurements would be useful for application to future measurements of exclusive hadronic Higgs boson decays.
id cern-1958071
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
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spelling cern-19580712022-08-10T12:52:22Zdoi:10.1140/epjc/s10052-015-3482-xhttp://cds.cern.ch/record/1958071engMangano, MichelangeloMelia, TomRare exclusive hadronic W decays in a $t\bar{t}$ environmentParticle Physics - PhenomenologyThe large cross section for t-tbar production at the LHC and at any future hadron collider provides a high-statistics and relatively clean environment for a study of W boson properties: after tagging on a leptonic decay of one of the Ws and the two b-jets, an additional W still remains in the event. We study the prospect of making the first exclusive hadronic decay of a fundamental boson of the standard model, using the decay modes W to pi gamma and W to pi pi pi, and other related decays. By using strong isolation criteria, which we impose by searching for jets with a single particle constituent, we show that the three particle hadronic W decays have potential to be measured at the LHC. The possibility of measuring an involved spectrum of decay products could considerably expand our knowledge of how the W decays, and experimental techniques acquired in making these measurements would be useful for application to future measurements of exclusive hadronic Higgs boson decays.The large cross section for $t\bar{t}$ production at the large hadron collider (LHC) and at any future hadron collider provides a high-statistics and relatively clean environment for a study of W boson properties: after tagging on a leptonic decay of one of the Ws and the two b jets, an additional W still remains in the event. We study the prospect of making the first exclusive hadronic decay of a fundamental boson of the standard model, using the decay modes $W\rightarrow \pi \gamma $ and $W \rightarrow \pi \pi \pi $ , and other related decays. By using strong isolation criteria, which we impose by searching for jets with a single particle constituent, we show that the three-particle hadronic W decays have potential to be measured at the LHC. The possibility of measuring an involved spectrum of decay products could considerably expand our knowledge of how the W decays, and experimental techniques acquired in making these measurements would be useful for application to future measurements of exclusive hadronic Higgs boson decays.The large cross section for t-tbar production at the LHC and at any future hadron collider provides a high-statistics and relatively clean environment for a study of W boson properties: after tagging on a leptonic decay of one of the Ws and the two b-jets, an additional W still remains in the event. We study the prospect of making the first exclusive hadronic decay of a fundamental boson of the standard model, using the decay modes W to pi gamma and W to pi pi pi, and other related decays. By using strong isolation criteria, which we impose by searching for jets with a single particle constituent, we show that the three particle hadronic W decays have potential to be measured at the LHC. The possibility of measuring an involved spectrum of decay products could considerably expand our knowledge of how the W decays, and experimental techniques acquired in making these measurements would be useful for application to future measurements of exclusive hadronic Higgs boson decays.arXiv:1410.7475oai:cds.cern.ch:19580712014-10-27
spellingShingle Particle Physics - Phenomenology
Mangano, Michelangelo
Melia, Tom
Rare exclusive hadronic W decays in a $t\bar{t}$ environment
title Rare exclusive hadronic W decays in a $t\bar{t}$ environment
title_full Rare exclusive hadronic W decays in a $t\bar{t}$ environment
title_fullStr Rare exclusive hadronic W decays in a $t\bar{t}$ environment
title_full_unstemmed Rare exclusive hadronic W decays in a $t\bar{t}$ environment
title_short Rare exclusive hadronic W decays in a $t\bar{t}$ environment
title_sort rare exclusive hadronic w decays in a $t\bar{t}$ environment
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1140/epjc/s10052-015-3482-x
http://cds.cern.ch/record/1958071
work_keys_str_mv AT manganomichelangelo rareexclusivehadronicwdecaysinatbartenvironment
AT meliatom rareexclusivehadronicwdecaysinatbartenvironment