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Perspectives for the study of charm in-medium quenching at the LHC with ALICE

Charm mesons produced in nucleus-nucleus collisions are expected to be less attenuated (quenched) by the medium than hadrons containing only light quarks, since radiative energy loss of heavy quarks should be reduced by the `dead-cone' effect. We start from a published energy-loss model to deri...

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Autor principal: Dainese, Andrea
Lenguaje:eng
Publicado: 2003
Materias:
Acceso en línea:https://dx.doi.org/10.1140/epjc/s2004-01645-4
http://cds.cern.ch/record/689816
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author Dainese, Andrea
author_facet Dainese, Andrea
author_sort Dainese, Andrea
collection CERN
description Charm mesons produced in nucleus-nucleus collisions are expected to be less attenuated (quenched) by the medium than hadrons containing only light quarks, since radiative energy loss of heavy quarks should be reduced by the `dead-cone' effect. We start from a published energy-loss model to derive the quenching for D mesons at the LHC, introducing an approximation of the dead-cone effect and employing a Glauber-based description of the geometry of central Pb-Pb collisions to estimate the in-medium path lengths of c quarks. We show that the exclusive reconstruction of D^0 \to K\pi decays in ALICE allows to measure the nuclear modification factor of the D mesons transverse momentum distribution and the D/(charged hadrons) ratio and, thus, to investigate the energy loss of c quarks.
id cern-689816
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2003
record_format invenio
spelling cern-6898162023-03-15T19:11:04Zdoi:10.1140/epjc/s2004-01645-4http://cds.cern.ch/record/689816engDainese, AndreaPerspectives for the study of charm in-medium quenching at the LHC with ALICENuclear Physics - ExperimentCharm mesons produced in nucleus-nucleus collisions are expected to be less attenuated (quenched) by the medium than hadrons containing only light quarks, since radiative energy loss of heavy quarks should be reduced by the `dead-cone' effect. We start from a published energy-loss model to derive the quenching for D mesons at the LHC, introducing an approximation of the dead-cone effect and employing a Glauber-based description of the geometry of central Pb-Pb collisions to estimate the in-medium path lengths of c quarks. We show that the exclusive reconstruction of D^0 \to K\pi decays in ALICE allows to measure the nuclear modification factor of the D mesons transverse momentum distribution and the D/(charged hadrons) ratio and, thus, to investigate the energy loss of c quarks.Charm mesons produced in nucleus-nucleus collisions are expected to be less attenuated (quenched) by the medium than hadrons containing only light quarks, since radiative energy loss of heavy quarks should be reduced by the `dead-cone' effect. We start from a published energy-loss model to derive the quenching for D mesons at the LHC, introducing an approximation of the dead-cone effect and employing a Glauber-based description of the geometry of central Pb-Pb collisions to estimate the in-medium path lengths of c quarks. We show that the exclusive reconstruction of D^0 \to K\pi decays in ALICE allows to measure the nuclear modification factor of the D mesons transverse momentum distribution and the D/(charged hadrons) ratio and, thus, to investigate the energy loss of c quarks.nucl-ex/0312005oai:cds.cern.ch:6898162003-12-04
spellingShingle Nuclear Physics - Experiment
Dainese, Andrea
Perspectives for the study of charm in-medium quenching at the LHC with ALICE
title Perspectives for the study of charm in-medium quenching at the LHC with ALICE
title_full Perspectives for the study of charm in-medium quenching at the LHC with ALICE
title_fullStr Perspectives for the study of charm in-medium quenching at the LHC with ALICE
title_full_unstemmed Perspectives for the study of charm in-medium quenching at the LHC with ALICE
title_short Perspectives for the study of charm in-medium quenching at the LHC with ALICE
title_sort perspectives for the study of charm in-medium quenching at the lhc with alice
topic Nuclear Physics - Experiment
url https://dx.doi.org/10.1140/epjc/s2004-01645-4
http://cds.cern.ch/record/689816
work_keys_str_mv AT daineseandrea perspectivesforthestudyofcharminmediumquenchingatthelhcwithalice