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Tevatron-for-LHC Report of the QCD Working Group

The experiments at Run 2 of the Tevatron have each accumulated over 1 inverse femtobarn of high-transverse momentum data. Such a dataset allows for the first precision (i.e. comparisons between theory and experiment at the few percent level) tests of QCD at a hadron collider. While the Large Hadron...

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Detalles Bibliográficos
Autores principales: Albrow, Michael G., Begel, M., Bourilkov, D., Campanelli, M., Chlebana, F., De Roeck, A., Dittmann, J.R., Ellis, S.D., Field, B., Field, R., Gallinaro, M., Giele, W., Goulianos, Konstantin A., Group, R.C., Hatakeyama, K., Hubacek, Z., Huston, J., Kilgore, W., Kluge, T., Lee, S.W., Moraes, A., Mrenna, S., Olness, F., Proudfoot, J., Rabbertz, K., Royon, C., Sjostrand, T., Skands, Peter Z., Smith, J., Tung, W.K., Whalley, M.R., Wobisch, M., Zielinski, M.
Lenguaje:eng
Publicado: 2006
Materias:
Acceso en línea:http://cds.cern.ch/record/987065
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author Albrow, Michael G.
Begel, M.
Bourilkov, D.
Campanelli, M.
Chlebana, F.
De Roeck, A.
Dittmann, J.R.
Ellis, S.D.
Field, B.
Field, R.
Gallinaro, M.
Giele, W.
Goulianos, Konstantin A.
Group, R.C.
Hatakeyama, K.
Hubacek, Z.
Huston, J.
Kilgore, W.
Kluge, T.
Lee, S.W.
Moraes, A.
Mrenna, S.
Olness, F.
Proudfoot, J.
Rabbertz, K.
Royon, C.
Sjostrand, T.
Skands, Peter Z.
Smith, J.
Tung, W.K.
Whalley, M.R.
Wobisch, M.
Zielinski, M.
author_facet Albrow, Michael G.
Begel, M.
Bourilkov, D.
Campanelli, M.
Chlebana, F.
De Roeck, A.
Dittmann, J.R.
Ellis, S.D.
Field, B.
Field, R.
Gallinaro, M.
Giele, W.
Goulianos, Konstantin A.
Group, R.C.
Hatakeyama, K.
Hubacek, Z.
Huston, J.
Kilgore, W.
Kluge, T.
Lee, S.W.
Moraes, A.
Mrenna, S.
Olness, F.
Proudfoot, J.
Rabbertz, K.
Royon, C.
Sjostrand, T.
Skands, Peter Z.
Smith, J.
Tung, W.K.
Whalley, M.R.
Wobisch, M.
Zielinski, M.
author_sort Albrow, Michael G.
collection CERN
description The experiments at Run 2 of the Tevatron have each accumulated over 1 inverse femtobarn of high-transverse momentum data. Such a dataset allows for the first precision (i.e. comparisons between theory and experiment at the few percent level) tests of QCD at a hadron collider. While the Large Hadron Collider has been designed as a discovery machine, basic QCD analyses will still need to be performed to understand the working environment. The Tevatron-for-LHC workshop was conceived as a communication link to pass on the expertise of the Tevatron and to test new analysis ideas coming from the LHC community. The TeV4LHC QCD Working Group focussed on important aspects of QCD at hadron colliders: jet definitions, extraction and use of Parton Distribution Functions, the underlying event, Monte Carlo tunes, and diffractive physics. This report summarizes some of the results achieved during this workshop.
id cern-987065
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2006
record_format invenio
spelling cern-9870652023-01-31T11:08:36Zhttp://cds.cern.ch/record/987065engAlbrow, Michael G.Begel, M.Bourilkov, D.Campanelli, M.Chlebana, F.De Roeck, A.Dittmann, J.R.Ellis, S.D.Field, B.Field, R.Gallinaro, M.Giele, W.Goulianos, Konstantin A.Group, R.C.Hatakeyama, K.Hubacek, Z.Huston, J.Kilgore, W.Kluge, T.Lee, S.W.Moraes, A.Mrenna, S.Olness, F.Proudfoot, J.Rabbertz, K.Royon, C.Sjostrand, T.Skands, Peter Z.Smith, J.Tung, W.K.Whalley, M.R.Wobisch, M.Zielinski, M.Tevatron-for-LHC Report of the QCD Working GroupParticle Physics - PhenomenologyThe experiments at Run 2 of the Tevatron have each accumulated over 1 inverse femtobarn of high-transverse momentum data. Such a dataset allows for the first precision (i.e. comparisons between theory and experiment at the few percent level) tests of QCD at a hadron collider. While the Large Hadron Collider has been designed as a discovery machine, basic QCD analyses will still need to be performed to understand the working environment. The Tevatron-for-LHC workshop was conceived as a communication link to pass on the expertise of the Tevatron and to test new analysis ideas coming from the LHC community. The TeV4LHC QCD Working Group focussed on important aspects of QCD at hadron colliders: jet definitions, extraction and use of Parton Distribution Functions, the underlying event, Monte Carlo tunes, and diffractive physics. This report summarizes some of the results achieved during this workshop.The experiments at Run 2 of the Tevatron have each accumulated over 1 inverse femtobarn of high-transverse momentum data. Such a dataset allows for the first precision (i.e. comparisons between theory and experiment at the few percent level) tests of QCD at a hadron collider. While the Large Hadron Collider has been designed as a discovery machine, basic QCD analyses will still need to be performed to understand the working environment. The Tevatron-for-LHC workshop was conceived as a communication link to pass on the expertise of the Tevatron and to test new analysis ideas coming from the LHC community. The TeV4LHC QCD Working Group focussed on important aspects of QCD at hadron colliders: jet definitions, extraction and use of Parton Distribution Functions, the underlying event, Monte Carlo tunes, and diffractive physics. This report summarizes some of the results achieved during this workshop.The experiments at Run 2 of the Tevatron have each accumulated over 1 inverse femtobarn of high-transverse momentum data. Such a dataset allows for the first precision (i.e. comparisons between theory and experiment at the few percent level) tests of QCD at a hadron collider. While the Large Hadron Collider has been designed as a discovery machine, basic QCD analyses will still need to be performed to understand the working environment. The Tevatron-for-LHC workshop was conceived as a communication link to pass on the expertise of the Tevatron and to test new analysis ideas coming from the LHC community. The TeV4LHC QCD Working Group focussed on important aspects of QCD at hadron colliders: jet definitions, extraction and use of Parton Distribution Functions, the underlying event, Monte Carlo tunes, and diffractive physics. This report summarizes some of the results achieved during this workshop.hep-ph/0610012FERMILAB-CONF-06-359Fermilab-Conf-2006-359oai:cds.cern.ch:9870652006-10-01
spellingShingle Particle Physics - Phenomenology
Albrow, Michael G.
Begel, M.
Bourilkov, D.
Campanelli, M.
Chlebana, F.
De Roeck, A.
Dittmann, J.R.
Ellis, S.D.
Field, B.
Field, R.
Gallinaro, M.
Giele, W.
Goulianos, Konstantin A.
Group, R.C.
Hatakeyama, K.
Hubacek, Z.
Huston, J.
Kilgore, W.
Kluge, T.
Lee, S.W.
Moraes, A.
Mrenna, S.
Olness, F.
Proudfoot, J.
Rabbertz, K.
Royon, C.
Sjostrand, T.
Skands, Peter Z.
Smith, J.
Tung, W.K.
Whalley, M.R.
Wobisch, M.
Zielinski, M.
Tevatron-for-LHC Report of the QCD Working Group
title Tevatron-for-LHC Report of the QCD Working Group
title_full Tevatron-for-LHC Report of the QCD Working Group
title_fullStr Tevatron-for-LHC Report of the QCD Working Group
title_full_unstemmed Tevatron-for-LHC Report of the QCD Working Group
title_short Tevatron-for-LHC Report of the QCD Working Group
title_sort tevatron-for-lhc report of the qcd working group
topic Particle Physics - Phenomenology
url http://cds.cern.ch/record/987065
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