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Inclusive heavy-flavour production at central and forward rapidity in Xe-Xe collisions at sNN√=5.44 TeV

arXiv. 2020 2011.06970

Erscheinungsjahr: 2020

Publikationstyp: Diverses (Forschungsbericht)

Sprache: Englisch

Doi/URN: https://doi.org/10.48550/arXiv.2011.06970

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Inhaltszusammenfassung


The first measurements of the production of muons and electrons from heavy-flavour hadron decays in Xe-Xe collisions at sNN‾‾‾‾√ = 5.44 TeV, using the ALICE detector at the LHC, are reported. The measurement of the nuclear modification factor RAA is performed as a function of transverse momentum pT in several centrality classes at forward rapidity (2.5<y<4) and midrapidity (|y|<0.8) for muons and electrons from heavy-flavour hadron decays, respectively. A suppression by a factor up to about 2...The first measurements of the production of muons and electrons from heavy-flavour hadron decays in Xe-Xe collisions at sNN‾‾‾‾√ = 5.44 TeV, using the ALICE detector at the LHC, are reported. The measurement of the nuclear modification factor RAA is performed as a function of transverse momentum pT in several centrality classes at forward rapidity (2.5<y<4) and midrapidity (|y|<0.8) for muons and electrons from heavy-flavour hadron decays, respectively. A suppression by a factor up to about 2.5 compared to the binary-scaled pp reference is observed in central collisions at both central and forward rapidities. The RAA of muons from heavy-flavour hadron decays is compared to previous measurements in Pb-Pb collisions at sNN‾‾‾‾√ = 5.02 TeV. A similar suppression, with RAA∼0.4 in the pT interval 4<pT<8 GeV/c, is observed in Pb-Pb and Xe-Xe collisions when the nuclear modification factors are compared in event classes with similar charged-particle multiplicity density. The comparison of the measured RAA values in the two collision systems brings new insights on the properties of the quark-gluon plasma by investigating the system-size and path-length dependence of medium-induced parton energy loss. The results of muons and electrons from heavy-flavour hadron decays provide new constraints to model calculations.» weiterlesen» einklappen

Autoren


Acharya, S. (Autor)
Adamova, D. (Autor)
Adler, A. (Autor)

Klassifikation


DDC Sachgruppe:
Physik

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