First observation of the doubly charmed baryon Ξcc +

Detalhes bibliográficos
Autor(a) principal: Mattson, M.
Data de Publicação: 2002
Outros Autores: Alkhazov, G., Atamantchouk, A. G., Balatz, M. Y., Bondar, N. F., Cooper, P. S., Dauwe, L. J., Davidenko, G. V., Dersch, U., Dolgolenko, A. G., Dzyubenko, G. B., Edelstein, R., Emediato, L., Endler, A. M F, Engelfried, J., Eschrich, I., Escobar, C. O., Evdokimov, A. V., Filimonov, I. S., Garcia, F. G., Gaspero, M., Giller, I., Golovtsov, V. L., Gouffon, P., Gülmez, E., Kangling, H., Iori, M., Jun, S. Y., Kaya, M., Kilmer, J., Kim, V. T., Kochenda, L. M., Konorov, I., Kozhevnikov, A. P., Krivshich, A. G., Krüger, H., Kubantsev, M. A., Kubarovsky, V. P., Kulyavtsev, A. I., Kuropatkin, N. P., Kurshetsov, V. F., Kushnirenko, A., Kwan, S., Lach, J., Lamberto, A., Landsberg, L. G., Larin, I., Leikin, E. M., Yunshan, L., Luksys, M., Lungov, T., Maleev, V. P., Mao, D., Chensheng, M., Zhenlin, M., Mathew, P., Matveev, V., McCliment, E., Moinester, M. A., Molchanov, V. V., Morelos, A., Nelson, K. D., Nemitkin, A. V., Neoustroev, P. V., Newsom, C., Nilov, A. P., Nurushev, S. B., Ocherashvili, A., Oliveira, E., Onel, Y., Ozel, E., Ozkorucuklu, S., Penzo, A., Petrenko, S. V., Pogodin, P., Precario, M., Prutskoi, V. A., Ramberg, E., Rappazzo, G. F., Razmyslovich, B. V., Rud, V. I., Russ, J., Schiavon, P., Simon, J., Sitnikov, A. I., Skow, D., Smith, V. J., Srivastava, M., Steiner, V., Stepanov, V., Stutte, L., Svoiski, M., Terentyev, N. K., Thomas, G. P., Uvarov, L. N., Vasiliev, A. N., Vavilov, D. V., Verebryusov, V. S., Victorov, V. A., Vishnyakov, V. E., Vorobyov, A. A., Vorwalter, K., You, J., Wenheng, Z., Shuchen, Z., Zukanovich-Funchal, R.
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Repositório Institucional da UNESP
Texto Completo: http://dx.doi.org/10.1103/PhysRevLett.89.112001
http://hdl.handle.net/11449/66973
Resumo: The first experimental evidence for one of the six predicted baryon states which contain two valence charmed quarks-the doubly charmed baryons. As such, there were many predictions of the masses and other properties of these states. The properties of doubly charmed baryons provide a new window into the structure of baryonic matter.
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spelling First observation of the doubly charmed baryon Ξcc +Charged tracksCharmed quarksDoubly charmed baryonHadronsAlgorithmsCerenkov countersComputer simulationCopperDiamondsElectron energy levelsElectronic density of statesFermi levelNuclear reactorsProbabilityProtonsCharged particlesThe first experimental evidence for one of the six predicted baryon states which contain two valence charmed quarks-the doubly charmed baryons. As such, there were many predictions of the masses and other properties of these states. The properties of doubly charmed baryons provide a new window into the structure of baryonic matter.Ball State University, Muncie, IN 47306Bogazici University, Bebek 80815 IstanbulCarnegie-Mellon University, Pittsburgh, PA 15213Centro Brasileiro de Pesquisas Físicas, Rio de JaneiroFermi National Accelerator Laboratory, Batavia, IL 60510Institute for High Energy Physics, ProtvinoInstitute of High Energy Physics, BeijingInstitute of Theoretical and Experimental Physics, MoscowMax-Planck-Institut für Kernphysik, 69117 HeidelbergMoscow State University, MoscowPetersburg Nuclear Physics Institute, St. PetersburgTel Aviv University, 69978 Ramat AvivUniversidad Autónoma de San Luis Potosí, San Luis PotosíUniversidade Federal da Paraíba, ParaíbaUniversity of Bristol, Bristol BS8 1TLUniversity of Iowa, Iowa City, Iowa 52242University of Michigan-Flint, Flint, MI 48502University of Rome 'La Sapienza' INFN, RomeUniversity of São Paulo, São PauloUniversity of Trieste INFN, TriesteInfinion, MünchenImperial College, London SW7 2BZInstitüto de Física Universidade Estadüal de Campinas UNICAMP, Sao PauloPhysik-Department Technische Universität München, 85748 GarchingThe Boston Consulting Group, MünchenInstitüto de Física Teórica Universidade Estadüal Paülista, São PaüloLücent Technologies, Naperville, ILSPSS Inc., Chicago, ILUniversity of Alabama at Birmingham, Birmingham, AL 35294Imadent Ltd., Rehovot 76702DOE, Germantown, MDSolidum, Ottawa, ONSiemens Medizintechnik, ErlangenDeütsche Bank AG, EschbornBall State UniversityBogazici UniversityCarnegie-Mellon UniversityCentro Brasileiro de Pesquisas Físicas (CBPF)Fermi National Accelerator LaboratoryInstitute for High Energy PhysicsInstitute of High Energy PhysicsInstitute of Theoretical and Experimental PhysicsMax-Planck-Institut für KernphysikMoscow State UniversityPetersburg Nuclear Physics InstituteTel Aviv UniversityUniversidad Autónoma de San Luis PotosíUniversidade Federal da Paraíba (UFPB)University of BristolUniversity of IowaUniversity of MichiganINFNUniversidade de São Paulo (USP)InfinionImperial CollegeUniversidade Estadual de Campinas (UNICAMP)Technische Universität MünchenThe Boston Consulting GroupUniversidade Estadual Paulista (Unesp)Lücent TechnologiesSPSS Inc.University of Alabama at BirminghamImadent Ltd.DOESolidumSiemens MedizintechnikDeütsche Bank AGMattson, M.Alkhazov, G.Atamantchouk, A. G.Balatz, M. Y.Bondar, N. F.Cooper, P. S.Dauwe, L. J.Davidenko, G. V.Dersch, U.Dolgolenko, A. G.Dzyubenko, G. B.Edelstein, R.Emediato, L.Endler, A. M FEngelfried, J.Eschrich, I.Escobar, C. O.Evdokimov, A. V.Filimonov, I. S.Garcia, F. G.Gaspero, M.Giller, I.Golovtsov, V. L.Gouffon, P.Gülmez, E.Kangling, H.Iori, M.Jun, S. Y.Kaya, M.Kilmer, J.Kim, V. T.Kochenda, L. M.Konorov, I.Kozhevnikov, A. P.Krivshich, A. G.Krüger, H.Kubantsev, M. A.Kubarovsky, V. P.Kulyavtsev, A. I.Kuropatkin, N. P.Kurshetsov, V. F.Kushnirenko, A.Kwan, S.Lach, J.Lamberto, A.Landsberg, L. G.Larin, I.Leikin, E. M.Yunshan, L.Luksys, M.Lungov, T.Maleev, V. P.Mao, D.Chensheng, M.Zhenlin, M.Mathew, P.Matveev, V.McCliment, E.Moinester, M. A.Molchanov, V. V.Morelos, A.Nelson, K. D.Nemitkin, A. V.Neoustroev, P. V.Newsom, C.Nilov, A. P.Nurushev, S. B.Ocherashvili, A.Oliveira, E.Onel, Y.Ozel, E.Ozkorucuklu, S.Penzo, A.Petrenko, S. V.Pogodin, P.Precario, M.Prutskoi, V. A.Ramberg, E.Rappazzo, G. F.Razmyslovich, B. V.Rud, V. I.Russ, J.Schiavon, P.Simon, J.Sitnikov, A. I.Skow, D.Smith, V. J.Srivastava, M.Steiner, V.Stepanov, V.Stutte, L.Svoiski, M.Terentyev, N. K.Thomas, G. P.Uvarov, L. N.Vasiliev, A. N.Vavilov, D. V.Verebryusov, V. S.Victorov, V. A.Vishnyakov, V. E.Vorobyov, A. A.Vorwalter, K.You, J.Wenheng, Z.Shuchen, Z.Zukanovich-Funchal, R.2014-05-27T11:20:30Z2014-05-27T11:20:30Z2002-09-09info:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/articleapplication/pdfhttp://dx.doi.org/10.1103/PhysRevLett.89.112001Physical Review Letters, v. 89, n. 11, 2002.0031-9007http://hdl.handle.net/11449/6697310.1103/PhysRevLett.89.1120012-s2.0-00370483872-s2.0-0037048387.pdfScopusreponame:Repositório Institucional da UNESPinstname:Universidade Estadual Paulista (UNESP)instacron:UNESPengPhysical Review Letters8.8393,622info:eu-repo/semantics/openAccess2023-11-14T06:12:18Zoai:repositorio.unesp.br:11449/66973Repositório InstitucionalPUBhttp://repositorio.unesp.br/oai/requestopendoar:29462023-11-14T06:12:18Repositório Institucional da UNESP - Universidade Estadual Paulista (UNESP)false
dc.title.none.fl_str_mv First observation of the doubly charmed baryon Ξcc +
title First observation of the doubly charmed baryon Ξcc +
spellingShingle First observation of the doubly charmed baryon Ξcc +
Mattson, M.
Charged tracks
Charmed quarks
Doubly charmed baryon
Hadrons
Algorithms
Cerenkov counters
Computer simulation
Copper
Diamonds
Electron energy levels
Electronic density of states
Fermi level
Nuclear reactors
Probability
Protons
Charged particles
title_short First observation of the doubly charmed baryon Ξcc +
title_full First observation of the doubly charmed baryon Ξcc +
title_fullStr First observation of the doubly charmed baryon Ξcc +
title_full_unstemmed First observation of the doubly charmed baryon Ξcc +
title_sort First observation of the doubly charmed baryon Ξcc +
author Mattson, M.
author_facet Mattson, M.
Alkhazov, G.
Atamantchouk, A. G.
Balatz, M. Y.
Bondar, N. F.
Cooper, P. S.
Dauwe, L. J.
Davidenko, G. V.
Dersch, U.
Dolgolenko, A. G.
Dzyubenko, G. B.
Edelstein, R.
Emediato, L.
Endler, A. M F
Engelfried, J.
Eschrich, I.
Escobar, C. O.
Evdokimov, A. V.
Filimonov, I. S.
Garcia, F. G.
Gaspero, M.
Giller, I.
Golovtsov, V. L.
Gouffon, P.
Gülmez, E.
Kangling, H.
Iori, M.
Jun, S. Y.
Kaya, M.
Kilmer, J.
Kim, V. T.
Kochenda, L. M.
Konorov, I.
Kozhevnikov, A. P.
Krivshich, A. G.
Krüger, H.
Kubantsev, M. A.
Kubarovsky, V. P.
Kulyavtsev, A. I.
Kuropatkin, N. P.
Kurshetsov, V. F.
Kushnirenko, A.
Kwan, S.
Lach, J.
Lamberto, A.
Landsberg, L. G.
Larin, I.
Leikin, E. M.
Yunshan, L.
Luksys, M.
Lungov, T.
Maleev, V. P.
Mao, D.
Chensheng, M.
Zhenlin, M.
Mathew, P.
Matveev, V.
McCliment, E.
Moinester, M. A.
Molchanov, V. V.
Morelos, A.
Nelson, K. D.
Nemitkin, A. V.
Neoustroev, P. V.
Newsom, C.
Nilov, A. P.
Nurushev, S. B.
Ocherashvili, A.
Oliveira, E.
Onel, Y.
Ozel, E.
Ozkorucuklu, S.
Penzo, A.
Petrenko, S. V.
Pogodin, P.
Precario, M.
Prutskoi, V. A.
Ramberg, E.
Rappazzo, G. F.
Razmyslovich, B. V.
Rud, V. I.
Russ, J.
Schiavon, P.
Simon, J.
Sitnikov, A. I.
Skow, D.
Smith, V. J.
Srivastava, M.
Steiner, V.
Stepanov, V.
Stutte, L.
Svoiski, M.
Terentyev, N. K.
Thomas, G. P.
Uvarov, L. N.
Vasiliev, A. N.
Vavilov, D. V.
Verebryusov, V. S.
Victorov, V. A.
Vishnyakov, V. E.
Vorobyov, A. A.
Vorwalter, K.
You, J.
Wenheng, Z.
Shuchen, Z.
Zukanovich-Funchal, R.
author_role author
author2 Alkhazov, G.
Atamantchouk, A. G.
Balatz, M. Y.
Bondar, N. F.
Cooper, P. S.
Dauwe, L. J.
Davidenko, G. V.
Dersch, U.
Dolgolenko, A. G.
Dzyubenko, G. B.
Edelstein, R.
Emediato, L.
Endler, A. M F
Engelfried, J.
Eschrich, I.
Escobar, C. O.
Evdokimov, A. V.
Filimonov, I. S.
Garcia, F. G.
Gaspero, M.
Giller, I.
Golovtsov, V. L.
Gouffon, P.
Gülmez, E.
Kangling, H.
Iori, M.
Jun, S. Y.
Kaya, M.
Kilmer, J.
Kim, V. T.
Kochenda, L. M.
Konorov, I.
Kozhevnikov, A. P.
Krivshich, A. G.
Krüger, H.
Kubantsev, M. A.
Kubarovsky, V. P.
Kulyavtsev, A. I.
Kuropatkin, N. P.
Kurshetsov, V. F.
Kushnirenko, A.
Kwan, S.
Lach, J.
Lamberto, A.
Landsberg, L. G.
Larin, I.
Leikin, E. M.
Yunshan, L.
Luksys, M.
Lungov, T.
Maleev, V. P.
Mao, D.
Chensheng, M.
Zhenlin, M.
Mathew, P.
Matveev, V.
McCliment, E.
Moinester, M. A.
Molchanov, V. V.
Morelos, A.
Nelson, K. D.
Nemitkin, A. V.
Neoustroev, P. V.
Newsom, C.
Nilov, A. P.
Nurushev, S. B.
Ocherashvili, A.
Oliveira, E.
Onel, Y.
Ozel, E.
Ozkorucuklu, S.
Penzo, A.
Petrenko, S. V.
Pogodin, P.
Precario, M.
Prutskoi, V. A.
Ramberg, E.
Rappazzo, G. F.
Razmyslovich, B. V.
Rud, V. I.
Russ, J.
Schiavon, P.
Simon, J.
Sitnikov, A. I.
Skow, D.
Smith, V. J.
Srivastava, M.
Steiner, V.
Stepanov, V.
Stutte, L.
Svoiski, M.
Terentyev, N. K.
Thomas, G. P.
Uvarov, L. N.
Vasiliev, A. N.
Vavilov, D. V.
Verebryusov, V. S.
Victorov, V. A.
Vishnyakov, V. E.
Vorobyov, A. A.
Vorwalter, K.
You, J.
Wenheng, Z.
Shuchen, Z.
Zukanovich-Funchal, R.
author2_role author
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dc.contributor.none.fl_str_mv Ball State University
Bogazici University
Carnegie-Mellon University
Centro Brasileiro de Pesquisas Físicas (CBPF)
Fermi National Accelerator Laboratory
Institute for High Energy Physics
Institute of High Energy Physics
Institute of Theoretical and Experimental Physics
Max-Planck-Institut für Kernphysik
Moscow State University
Petersburg Nuclear Physics Institute
Tel Aviv University
Universidad Autónoma de San Luis Potosí
Universidade Federal da Paraíba (UFPB)
University of Bristol
University of Iowa
University of Michigan
INFN
Universidade de São Paulo (USP)
Infinion
Imperial College
Universidade Estadual de Campinas (UNICAMP)
Technische Universität München
The Boston Consulting Group
Universidade Estadual Paulista (Unesp)
Lücent Technologies
SPSS Inc.
University of Alabama at Birmingham
Imadent Ltd.
DOE
Solidum
Siemens Medizintechnik
Deütsche Bank AG
dc.contributor.author.fl_str_mv Mattson, M.
Alkhazov, G.
Atamantchouk, A. G.
Balatz, M. Y.
Bondar, N. F.
Cooper, P. S.
Dauwe, L. J.
Davidenko, G. V.
Dersch, U.
Dolgolenko, A. G.
Dzyubenko, G. B.
Edelstein, R.
Emediato, L.
Endler, A. M F
Engelfried, J.
Eschrich, I.
Escobar, C. O.
Evdokimov, A. V.
Filimonov, I. S.
Garcia, F. G.
Gaspero, M.
Giller, I.
Golovtsov, V. L.
Gouffon, P.
Gülmez, E.
Kangling, H.
Iori, M.
Jun, S. Y.
Kaya, M.
Kilmer, J.
Kim, V. T.
Kochenda, L. M.
Konorov, I.
Kozhevnikov, A. P.
Krivshich, A. G.
Krüger, H.
Kubantsev, M. A.
Kubarovsky, V. P.
Kulyavtsev, A. I.
Kuropatkin, N. P.
Kurshetsov, V. F.
Kushnirenko, A.
Kwan, S.
Lach, J.
Lamberto, A.
Landsberg, L. G.
Larin, I.
Leikin, E. M.
Yunshan, L.
Luksys, M.
Lungov, T.
Maleev, V. P.
Mao, D.
Chensheng, M.
Zhenlin, M.
Mathew, P.
Matveev, V.
McCliment, E.
Moinester, M. A.
Molchanov, V. V.
Morelos, A.
Nelson, K. D.
Nemitkin, A. V.
Neoustroev, P. V.
Newsom, C.
Nilov, A. P.
Nurushev, S. B.
Ocherashvili, A.
Oliveira, E.
Onel, Y.
Ozel, E.
Ozkorucuklu, S.
Penzo, A.
Petrenko, S. V.
Pogodin, P.
Precario, M.
Prutskoi, V. A.
Ramberg, E.
Rappazzo, G. F.
Razmyslovich, B. V.
Rud, V. I.
Russ, J.
Schiavon, P.
Simon, J.
Sitnikov, A. I.
Skow, D.
Smith, V. J.
Srivastava, M.
Steiner, V.
Stepanov, V.
Stutte, L.
Svoiski, M.
Terentyev, N. K.
Thomas, G. P.
Uvarov, L. N.
Vasiliev, A. N.
Vavilov, D. V.
Verebryusov, V. S.
Victorov, V. A.
Vishnyakov, V. E.
Vorobyov, A. A.
Vorwalter, K.
You, J.
Wenheng, Z.
Shuchen, Z.
Zukanovich-Funchal, R.
dc.subject.por.fl_str_mv Charged tracks
Charmed quarks
Doubly charmed baryon
Hadrons
Algorithms
Cerenkov counters
Computer simulation
Copper
Diamonds
Electron energy levels
Electronic density of states
Fermi level
Nuclear reactors
Probability
Protons
Charged particles
topic Charged tracks
Charmed quarks
Doubly charmed baryon
Hadrons
Algorithms
Cerenkov counters
Computer simulation
Copper
Diamonds
Electron energy levels
Electronic density of states
Fermi level
Nuclear reactors
Probability
Protons
Charged particles
description The first experimental evidence for one of the six predicted baryon states which contain two valence charmed quarks-the doubly charmed baryons. As such, there were many predictions of the masses and other properties of these states. The properties of doubly charmed baryons provide a new window into the structure of baryonic matter.
publishDate 2002
dc.date.none.fl_str_mv 2002-09-09
2014-05-27T11:20:30Z
2014-05-27T11:20:30Z
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
dc.type.driver.fl_str_mv info:eu-repo/semantics/article
format article
status_str publishedVersion
dc.identifier.uri.fl_str_mv http://dx.doi.org/10.1103/PhysRevLett.89.112001
Physical Review Letters, v. 89, n. 11, 2002.
0031-9007
http://hdl.handle.net/11449/66973
10.1103/PhysRevLett.89.112001
2-s2.0-0037048387
2-s2.0-0037048387.pdf
url http://dx.doi.org/10.1103/PhysRevLett.89.112001
http://hdl.handle.net/11449/66973
identifier_str_mv Physical Review Letters, v. 89, n. 11, 2002.
0031-9007
10.1103/PhysRevLett.89.112001
2-s2.0-0037048387
2-s2.0-0037048387.pdf
dc.language.iso.fl_str_mv eng
language eng
dc.relation.none.fl_str_mv Physical Review Letters
8.839
3,622
dc.rights.driver.fl_str_mv info:eu-repo/semantics/openAccess
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv application/pdf
dc.source.none.fl_str_mv Scopus
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institution UNESP
reponame_str Repositório Institucional da UNESP
collection Repositório Institucional da UNESP
repository.name.fl_str_mv Repositório Institucional da UNESP - Universidade Estadual Paulista (UNESP)
repository.mail.fl_str_mv
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