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Measurement of the Nuclear Modification Factor for Muons from Charm and Bottom Hadrons in Pb+Pb Collisions at 5.02 TeV with the ATLAS Detector
[Study Group] ATLAS Collaboration CERN
Spyridon Argyropoulos
Fabian Becherer
Michael Böhler
Simona Gargiulo
Constantin Heidegger
Kim K. Heidegger
Beate Heinemann
Gregor Herten
David Hohn
Jan Cedric Hönig
Karl Jakobs
Peter Jenni
Stephen Jiggins
Thorwald Klapdor-Kleingrothaus
Andrea Knue
Karsten Köneke
Oleg Kuprash
Ulrich Landgraf
Valerie Lang
Alena Lösle
Veronika Magerl
Tetiana Moskalets
Ulrich Parzefall
Vladislavs Plesanovs
Arturo Rodriguez Rodriguez
Benoit Roland
Benjamin Rottler
Frederik Rühr
Zuzana Rúriková
Dirk Sammel
Frank Sauerburger
Katharina E. Schleicher
Patrick Scholer
Markus Schumacher
Shalu Solomon
Dennis Sperlich
Christian Weiser
Liv Wiik-Fuchs
Benedict T. Winter
Christopher Young
Daniele Zanzi
Stephanie Zimmermann
et al
出版
Universität
, 2022
URL
http://books.google.com.hk/books?id=o9jgzwEACAAJ&hl=&source=gbs_api
註釋
Abstract: Heavy-flavour hadron production provides information about the transport properties and microscopic structure of the quark-gluon plasma created in ultra-relativistic heavy-ion collisions. A measurement of the muons from semileptonic decays of charm and bottom hadrons produced in Pb+Pb and pp collisions at a nucleon-nucleon centre-of-mass energy of 5.02 TeV with the ATLAS detector at the Large Hadron Collider is presented. The Pb+Pb data were collected in 2015 and 2018 with sampled integrated luminosities of
and
, respectively, and pp data with a sampled integrated luminosity of
were collected in 2017. Muons from heavy-flavour semileptonic decays are separated from the light-flavour hadronic background using the momentum imbalance between the inner detector and muon spectrometer measurements, and muons originating from charm and bottom decays are further separated via the muon track's transverse impact parameter. Differential yields in Pb+Pb collisions and differential cross sections in pp collisions for such muons are measured as a function of muon transverse momentum from 4 GeV to 30 GeV in the absolute pseudorapidity interval
. Nuclear modification factors for charm and bottom muons are presented as a function of muon transverse momentum in intervals of Pb+Pb collision centrality. The bottom muon results are the most precise measurement of b quark nuclear modification at low transverse momentum where reconstruction of B hadrons is challenging. The measured nuclear modification factors quantify a significant suppression of the yields of muons from decays of charm and bottom hadrons, with stronger effects for muons from charm hadron decays