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Heavy quarkonium: progress, puzzles, and opportunities

A golden age for heavy quarkonium physics dawned a decade ago, initiated by the confluence of exciting advances in quantum chromodynamics (QCD) and an explosion of related experimental activity. The early years of this period were chronicled in the Quarkonium Working Group (QWG) CERN Yellow Report (...

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Detalles Bibliográficos
Autores principales: Brambilla, N., Eidelman, S., Heltsley, B.K., Vogt, R., Bodwin, G.T., Eichten, E., Frawley, A.D., Meyer, A.B., Mitchell, R.E., Papadimitriou, V., Petreczky, P., Petrov, A.A., Robbe, P., Vairo, A., Andronic, A., Arnaldi, R., Artoisenet, P., Bali, G., Bertolin, A., Bettoni, D., Brodzicka, J., Bruno, G.E., Caldwell, A., Catmore, J., Chang, C.H., Chao, K.T., Chudakov, E., Cortese, P., Crochet, P., Drutskoy, A., Ellwanger, U., Faccioli, P., Gabareen Mokhtar, A., Garcia i Tormo, X., Hanhart, C., Harris, F.A., Kaplan, D.M., Klein, S.R., Kowalski, H., Lansberg, J.P., Levichev, E., Lombardo, V., Lourenco, C., Maltoni, F., Mocsy, A., Mussa, R., Navarra, F.S., Negrini, M., Nielsen, M., Olsen, S.L., Pakhlov, P., Pakhlova, G., Peters, K., Polosa, A.D., Qian, W., Qiu, J.W., Rong, G., Sanchis-Lozano, M.A., Scomparin, E., Senger, P., Simon, F., Stracka, S., Sumino, Y., Voloshin, M., Weiss, C., Wohri, H.K., Yuan, C.Z.
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:https://dx.doi.org/10.1140/epjc/s10052-010-1534-9
http://cds.cern.ch/record/1303384
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author Brambilla, N.
Eidelman, S.
Heltsley, B.K.
Vogt, R.
Bodwin, G.T.
Eichten, E.
Frawley, A.D.
Meyer, A.B.
Mitchell, R.E.
Papadimitriou, V.
Petreczky, P.
Petrov, A.A.
Robbe, P.
Vairo, A.
Andronic, A.
Arnaldi, R.
Artoisenet, P.
Bali, G.
Bertolin, A.
Bettoni, D.
Brodzicka, J.
Bruno, G.E.
Caldwell, A.
Catmore, J.
Chang, C.H.
Chao, K.T.
Chudakov, E.
Cortese, P.
Crochet, P.
Drutskoy, A.
Ellwanger, U.
Faccioli, P.
Gabareen Mokhtar, A.
Garcia i Tormo, X.
Hanhart, C.
Harris, F.A.
Kaplan, D.M.
Klein, S.R.
Kowalski, H.
Lansberg, J.P.
Levichev, E.
Lombardo, V.
Lourenco, C.
Maltoni, F.
Mocsy, A.
Mussa, R.
Navarra, F.S.
Negrini, M.
Nielsen, M.
Olsen, S.L.
Pakhlov, P.
Pakhlova, G.
Peters, K.
Polosa, A.D.
Qian, W.
Qiu, J.W.
Rong, G.
Sanchis-Lozano, M.A.
Scomparin, E.
Senger, P.
Simon, F.
Stracka, S.
Sumino, Y.
Voloshin, M.
Weiss, C.
Wohri, H.K.
Yuan, C.Z.
author_facet Brambilla, N.
Eidelman, S.
Heltsley, B.K.
Vogt, R.
Bodwin, G.T.
Eichten, E.
Frawley, A.D.
Meyer, A.B.
Mitchell, R.E.
Papadimitriou, V.
Petreczky, P.
Petrov, A.A.
Robbe, P.
Vairo, A.
Andronic, A.
Arnaldi, R.
Artoisenet, P.
Bali, G.
Bertolin, A.
Bettoni, D.
Brodzicka, J.
Bruno, G.E.
Caldwell, A.
Catmore, J.
Chang, C.H.
Chao, K.T.
Chudakov, E.
Cortese, P.
Crochet, P.
Drutskoy, A.
Ellwanger, U.
Faccioli, P.
Gabareen Mokhtar, A.
Garcia i Tormo, X.
Hanhart, C.
Harris, F.A.
Kaplan, D.M.
Klein, S.R.
Kowalski, H.
Lansberg, J.P.
Levichev, E.
Lombardo, V.
Lourenco, C.
Maltoni, F.
Mocsy, A.
Mussa, R.
Navarra, F.S.
Negrini, M.
Nielsen, M.
Olsen, S.L.
Pakhlov, P.
Pakhlova, G.
Peters, K.
Polosa, A.D.
Qian, W.
Qiu, J.W.
Rong, G.
Sanchis-Lozano, M.A.
Scomparin, E.
Senger, P.
Simon, F.
Stracka, S.
Sumino, Y.
Voloshin, M.
Weiss, C.
Wohri, H.K.
Yuan, C.Z.
author_sort Brambilla, N.
collection CERN
description A golden age for heavy quarkonium physics dawned a decade ago, initiated by the confluence of exciting advances in quantum chromodynamics (QCD) and an explosion of related experimental activity. The early years of this period were chronicled in the Quarkonium Working Group (QWG) CERN Yellow Report (YR) in 2004, which presented a comprehensive review of the status of the field at that time and provided specific recommendations for further progress. However, the broad spectrum of subsequent breakthroughs, surprises, and continuing puzzles could only be partially anticipated. Since the release of the YR, the BESII program concluded only to give birth to BESIII; the $B$-factories and CLEO-c flourished; quarkonium production and polarization measurements at HERA, JLab, and the Tevatron matured; and heavy-ion collisions at RHIC have opened a window on the deconfinement regime. All these experiments leave legacies of quality, precision, and unsolved mysteries for quarkonium physics, and therefore beg for continuing investigations. The plethora of newly-found quarkonium-like states unleashed a flood of theoretical investigations into new forms of matter such as quark-gluon hybrids, mesonic molecules, and tetraquarks. Measurements of the spectroscopy, decays, production, and in-medium behavior of c\bar{c}, b\bar{b}, and b\bar{c} bound states have been shown to validate some theoretical approaches to QCD and highlight lack of quantitativ e success for others. The intriguing details of quarkonium suppression in heavy-ion collisions that have emerged from RHIC have elevated the importance of separating hot- and cold-nuclear-matter effects in quark-gluon plasma studies. This review systematically addresses all these matters and concludes by prioritizing directions for ongoing and future efforts.
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institution Organización Europea para la Investigación Nuclear
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publishDate 2010
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spelling cern-13033842023-05-17T03:51:06Zdoi:10.1140/epjc/s10052-010-1534-9http://cds.cern.ch/record/1303384engBrambilla, N.Eidelman, S.Heltsley, B.K.Vogt, R.Bodwin, G.T.Eichten, E.Frawley, A.D.Meyer, A.B.Mitchell, R.E.Papadimitriou, V.Petreczky, P.Petrov, A.A.Robbe, P.Vairo, A.Andronic, A.Arnaldi, R.Artoisenet, P.Bali, G.Bertolin, A.Bettoni, D.Brodzicka, J.Bruno, G.E.Caldwell, A.Catmore, J.Chang, C.H.Chao, K.T.Chudakov, E.Cortese, P.Crochet, P.Drutskoy, A.Ellwanger, U.Faccioli, P.Gabareen Mokhtar, A.Garcia i Tormo, X.Hanhart, C.Harris, F.A.Kaplan, D.M.Klein, S.R.Kowalski, H.Lansberg, J.P.Levichev, E.Lombardo, V.Lourenco, C.Maltoni, F.Mocsy, A.Mussa, R.Navarra, F.S.Negrini, M.Nielsen, M.Olsen, S.L.Pakhlov, P.Pakhlova, G.Peters, K.Polosa, A.D.Qian, W.Qiu, J.W.Rong, G.Sanchis-Lozano, M.A.Scomparin, E.Senger, P.Simon, F.Stracka, S.Sumino, Y.Voloshin, M.Weiss, C.Wohri, H.K.Yuan, C.Z.Heavy quarkonium: progress, puzzles, and opportunitiesParticle Physics - PhenomenologyA golden age for heavy quarkonium physics dawned a decade ago, initiated by the confluence of exciting advances in quantum chromodynamics (QCD) and an explosion of related experimental activity. The early years of this period were chronicled in the Quarkonium Working Group (QWG) CERN Yellow Report (YR) in 2004, which presented a comprehensive review of the status of the field at that time and provided specific recommendations for further progress. However, the broad spectrum of subsequent breakthroughs, surprises, and continuing puzzles could only be partially anticipated. Since the release of the YR, the BESII program concluded only to give birth to BESIII; the $B$-factories and CLEO-c flourished; quarkonium production and polarization measurements at HERA, JLab, and the Tevatron matured; and heavy-ion collisions at RHIC have opened a window on the deconfinement regime. All these experiments leave legacies of quality, precision, and unsolved mysteries for quarkonium physics, and therefore beg for continuing investigations. The plethora of newly-found quarkonium-like states unleashed a flood of theoretical investigations into new forms of matter such as quark-gluon hybrids, mesonic molecules, and tetraquarks. Measurements of the spectroscopy, decays, production, and in-medium behavior of c\bar{c}, b\bar{b}, and b\bar{c} bound states have been shown to validate some theoretical approaches to QCD and highlight lack of quantitativ e success for others. The intriguing details of quarkonium suppression in heavy-ion collisions that have emerged from RHIC have elevated the importance of separating hot- and cold-nuclear-matter effects in quark-gluon plasma studies. This review systematically addresses all these matters and concludes by prioritizing directions for ongoing and future efforts.A golden age for heavy quarkonium physics dawned a decade ago, initiated by the confluence of exciting advances in quantum chromodynamics (QCD) and an explosion of related experimental activity. The early years of this period were chronicled in the Quarkonium Working Group (QWG) CERN Yellow Report (YR) in 2004, which presented a comprehensive review of the status of the field at that time and provided specific recommendations for further progress. However, the broad spectrum of subsequent breakthroughs, surprises, and continuing puzzles could only be partially anticipated. Since the release of the YR, the BESII program concluded only to give birth to BESIII/ the $B$-factories and CLEO-c flourished/ quarkonium production and polarization measurements at HERA and the Tevatron matured/ and heavy-ion collisions at RHIC have opened a window on the deconfinement regime. All these experiments leave legacies of quality, precision, and unsolved mysteries for quarkonium physics, and therefore beg for continuing investigations. The plethora of newly-found quarkonium-like states unleashed a flood of theoretical investigations into new forms of matter such as quark-gluon hybrids, mesonic molecules, and tetraquarks. Measurements of the spectroscopy, decays, production, and in-medium behavior of c\bar{c}, b\bar{b}, and b\bar{c} bound states have been shown to validate some theoretical approaches to QCD and highlight lack of quantitative success for others. The intriguing details of quarkonium suppression in heavy-ion collisions that have emerged from RHIC have elevated the importance of separating hot- and cold-nuclear-matter effects in quark-gluon plasma studies. This review systematically addresses all these matters and concludes by prioritizing directions for ongoing and future efforts.arXiv:1010.5827SLAC-R-996TUM-EFT-11-10CLNS-10-2066ANL-HEP-PR-10-44ALBERTA-THY-11-10CP3-10-37FZJ-IKP-TH-2010-24INT-PUB-10-059JLAB-THY-11-1308FERMILAB-PUB-10-737-TTUM-EFT 11-10CLNS 10-2066ANL-HEP-PR-10-44ALBERTA THY 11-10CP3-10-37FZJ-IKP-TH-2010-24INT-PUB-10-059oai:cds.cern.ch:13033842010-10-29
spellingShingle Particle Physics - Phenomenology
Brambilla, N.
Eidelman, S.
Heltsley, B.K.
Vogt, R.
Bodwin, G.T.
Eichten, E.
Frawley, A.D.
Meyer, A.B.
Mitchell, R.E.
Papadimitriou, V.
Petreczky, P.
Petrov, A.A.
Robbe, P.
Vairo, A.
Andronic, A.
Arnaldi, R.
Artoisenet, P.
Bali, G.
Bertolin, A.
Bettoni, D.
Brodzicka, J.
Bruno, G.E.
Caldwell, A.
Catmore, J.
Chang, C.H.
Chao, K.T.
Chudakov, E.
Cortese, P.
Crochet, P.
Drutskoy, A.
Ellwanger, U.
Faccioli, P.
Gabareen Mokhtar, A.
Garcia i Tormo, X.
Hanhart, C.
Harris, F.A.
Kaplan, D.M.
Klein, S.R.
Kowalski, H.
Lansberg, J.P.
Levichev, E.
Lombardo, V.
Lourenco, C.
Maltoni, F.
Mocsy, A.
Mussa, R.
Navarra, F.S.
Negrini, M.
Nielsen, M.
Olsen, S.L.
Pakhlov, P.
Pakhlova, G.
Peters, K.
Polosa, A.D.
Qian, W.
Qiu, J.W.
Rong, G.
Sanchis-Lozano, M.A.
Scomparin, E.
Senger, P.
Simon, F.
Stracka, S.
Sumino, Y.
Voloshin, M.
Weiss, C.
Wohri, H.K.
Yuan, C.Z.
Heavy quarkonium: progress, puzzles, and opportunities
title Heavy quarkonium: progress, puzzles, and opportunities
title_full Heavy quarkonium: progress, puzzles, and opportunities
title_fullStr Heavy quarkonium: progress, puzzles, and opportunities
title_full_unstemmed Heavy quarkonium: progress, puzzles, and opportunities
title_short Heavy quarkonium: progress, puzzles, and opportunities
title_sort heavy quarkonium: progress, puzzles, and opportunities
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1140/epjc/s10052-010-1534-9
http://cds.cern.ch/record/1303384
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