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Study of e+e- -> H+H- at a 800 GeV Linear Collider

The production and decay of heavy charged Higgs bosons at a 800 GeV e+e- linear collider have been studied. The analysis of the H+H- -> tb tb, expected to be dominant in the MSSM, and H+H- -> W+h0 W-h0 decay modes leading to the same final state consisting of two W bosons and four b quarks, pr...

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Detalles Bibliográficos
Autores principales: Kiiskinen, A., Poyhonen, P., Battaglia, M.
Lenguaje:eng
Publicado: 2001
Materias:
Acceso en línea:https://dx.doi.org/10.1063/1.1394315
http://cds.cern.ch/record/484504
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author Kiiskinen, A.
Poyhonen, P.
Battaglia, M.
author_facet Kiiskinen, A.
Poyhonen, P.
Battaglia, M.
author_sort Kiiskinen, A.
collection CERN
description The production and decay of heavy charged Higgs bosons at a 800 GeV e+e- linear collider have been studied. The analysis of the H+H- -> tb tb, expected to be dominant in the MSSM, and H+H- -> W+h0 W-h0 decay modes leading to the same final state consisting of two W bosons and four b quarks, provides with a determination of the boson mass to 1 GeV and of the production cross section with 10% accuracy for 500 fb-1 of data.
id cern-484504
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2001
record_format invenio
spelling cern-4845042023-03-14T18:00:01Zdoi:10.1063/1.1394315http://cds.cern.ch/record/484504engKiiskinen, A.Poyhonen, P.Battaglia, M.Study of e+e- -> H+H- at a 800 GeV Linear ColliderParticle Physics - PhenomenologyThe production and decay of heavy charged Higgs bosons at a 800 GeV e+e- linear collider have been studied. The analysis of the H+H- -> tb tb, expected to be dominant in the MSSM, and H+H- -> W+h0 W-h0 decay modes leading to the same final state consisting of two W bosons and four b quarks, provides with a determination of the boson mass to 1 GeV and of the production cross section with 10% accuracy for 500 fb-1 of data.The production and decay of heavy charged Higgs bosons at a 800 GeV e+e- linear collider have been studied. The analysis of the H+H- -> tb tb, expected to be dominant in the MSSM, and H+H- -> W+h0 W-h0 decay modes leading to the same final state consisting of two W bosons and four b quarks, provides with a determination of the boson mass to 1 GeV and of the production cross section with 10% accuracy for 500 fb-1 of data.The production and decay of heavy charged Higgs bosons at a 800 GeV e+e- linear collider have been studied. The analysis of the H+H- -> tb tb, expected to be dominant in the MSSM, and H+H- -> W+h0 W-h0 decay modes leading to the same final state consisting of two W bosons and four b quarks, provides with a determination of the boson mass to 1 GeV and of the production cross section with 10% accuracy for 500 fb-1 of data.The production and decay of heavy charged Higgs bosons at a 800 GeV e+e- linear collider have been studied. The analysis of the H+H- -> tb tb, expected to be dominant in the MSSM, and H+H- -> W+h0 W-h0 decay modes leading to the same final state consisting of two W bosons and four b quarks, provides with a determination of the boson mass to 1 GeV and of the production cross section with 10% accuracy for 500 fb-1 of data.The production and decay of heavy charged Higgs bosons at a 800 GeV e+e- linear collider have been studied. The analysis of the H+H- -> tb tb, expected to be dominant in the MSSM, and H+H- -> W+h0 W-h0 decay modes leading to the same final state consisting of two W bosons and four b quarks, provides with a determination of the boson mass to 1 GeV and of the production cross section with 10% accuracy for 500 fb-1 of data.The production and decay of heavy charged Higgs bosons at a 800 GeV e+e- linear collider have been studied. The analysis of the H+H- -> tb tb, expected to be dominant in the MSSM, and H+H- -> W+h0 W-h0 decay modes leading to the same final state consisting of two W bosons and four b quarks, provides with a determination of the boson mass to 1 GeV and of the production cross section with 10% accuracy for 500 fb-1 of data.The production and decay of heavy charged Higgs bosons at a 800 GeV e+e− linear collider have been studied. The analysis of the H+H−→tb̄t̄b, expected to be dominant in the MSSM, and H+H−→W+h0W−h0 decay modes leading to the same final state consisting of two W bosons and four b quarks, provides with a determination of the boson mass to 1 GeV/c2 and of the production cross section with 10% accuracy for 500 fb−1 of data.hep-ph/0101239LC-PHSM-2001-041oai:cds.cern.ch:4845042001-01-22
spellingShingle Particle Physics - Phenomenology
Kiiskinen, A.
Poyhonen, P.
Battaglia, M.
Study of e+e- -> H+H- at a 800 GeV Linear Collider
title Study of e+e- -> H+H- at a 800 GeV Linear Collider
title_full Study of e+e- -> H+H- at a 800 GeV Linear Collider
title_fullStr Study of e+e- -> H+H- at a 800 GeV Linear Collider
title_full_unstemmed Study of e+e- -> H+H- at a 800 GeV Linear Collider
title_short Study of e+e- -> H+H- at a 800 GeV Linear Collider
title_sort study of e+e- -> h+h- at a 800 gev linear collider
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1063/1.1394315
http://cds.cern.ch/record/484504
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AT poyhonenp studyofeehhata800gevlinearcollider
AT battagliam studyofeehhata800gevlinearcollider