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Confirmation of the Z(4430)- resonance and other exotic meson results from the LHCb experiment

<!--HTML-->The LHCb experiment at CERN has recently confirmed the existence of the exotic Z(4430)- state first observed by the Belle experiment in 2008. Its quantum numbers have been measured and the resonant nature of this state has been demonstrated for the first time. As it is charged, the...

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Autor principal: Cowan, Greig
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:http://cds.cern.ch/record/1706201
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author Cowan, Greig
author_facet Cowan, Greig
author_sort Cowan, Greig
collection CERN
description <!--HTML-->The LHCb experiment at CERN has recently confirmed the existence of the exotic Z(4430)- state first observed by the Belle experiment in 2008. Its quantum numbers have been measured and the resonant nature of this state has been demonstrated for the first time. As it is charged, the Z(4430)- cannot be classified as a conventional charmonium (ccbar) state, making it a candidate for an exotic resonance composed of four quarks (ccbar udbar). This talk will outline the history of the Z(4430)-, its possible interpretations and describe how the signature of this exotic state can be extracted from the large sample of B0 -&gt; psi(2S) K+pi- decays that LHCb has collected during Run-1 of the LHC. I will also describe recent LHCb results that probe the nature of the exotic X(3872) particle and help to clarify our understanding of the f0(500) and f0(980) scalar mesons that have long thought to be four quark states.<br />
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institution Organización Europea para la Investigación Nuclear
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spelling cern-17062012022-11-02T22:33:21Zhttp://cds.cern.ch/record/1706201engCowan, GreigConfirmation of the Z(4430)- resonance and other exotic meson results from the LHCb experimentConfirmation of the Z(4430)- resonance and other exotic meson results from the LHCb experimentLHC Seminar<!--HTML-->The LHCb experiment at CERN has recently confirmed the existence of the exotic Z(4430)- state first observed by the Belle experiment in 2008. Its quantum numbers have been measured and the resonant nature of this state has been demonstrated for the first time. As it is charged, the Z(4430)- cannot be classified as a conventional charmonium (ccbar) state, making it a candidate for an exotic resonance composed of four quarks (ccbar udbar). This talk will outline the history of the Z(4430)-, its possible interpretations and describe how the signature of this exotic state can be extracted from the large sample of B0 -&gt; psi(2S) K+pi- decays that LHCb has collected during Run-1 of the LHC. I will also describe recent LHCb results that probe the nature of the exotic X(3872) particle and help to clarify our understanding of the f0(500) and f0(980) scalar mesons that have long thought to be four quark states.<br /> oai:cds.cern.ch:17062012014
spellingShingle LHC Seminar
Cowan, Greig
Confirmation of the Z(4430)- resonance and other exotic meson results from the LHCb experiment
title Confirmation of the Z(4430)- resonance and other exotic meson results from the LHCb experiment
title_full Confirmation of the Z(4430)- resonance and other exotic meson results from the LHCb experiment
title_fullStr Confirmation of the Z(4430)- resonance and other exotic meson results from the LHCb experiment
title_full_unstemmed Confirmation of the Z(4430)- resonance and other exotic meson results from the LHCb experiment
title_short Confirmation of the Z(4430)- resonance and other exotic meson results from the LHCb experiment
title_sort confirmation of the z(4430)- resonance and other exotic meson results from the lhcb experiment
topic LHC Seminar
url http://cds.cern.ch/record/1706201
work_keys_str_mv AT cowangreig confirmationofthez4430resonanceandotherexoticmesonresultsfromthelhcbexperiment