Muon Production from Heavy-flavour Hadron Decays in P-Pb and Pp Collisions with ALICE at the CERN-LHC

Muon Production from Heavy-flavour Hadron Decays in P-Pb and Pp Collisions with ALICE at the CERN-LHC

Author: Shuang Li

Publisher:

Published: 2015

Total Pages: 0

ISBN-13:

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The LHC heavy-ion physics program aims at investigating the properties of strongly-interacting matter in extreme conditions of temperature and energy density where the Quark-Gluon Plasma (QGP) is formed. In high-energy heavy-ion collisions, heavy quarks (charm and beauty) are regarded as efficient probes of the properties of the QGP. The heavy-ion physics program requires also the study of proton-proton (pp) and proton-nucleus (p-Pb) collisions. The study of p-Pb collisions is used to investigate cold nuclear matter effects and to validate and quantify hot nuclear matter effects which are observed in nucleus-nucleus (Pb-Pb) collisions. This thesis work is devoted to the study of open heavy-flavour production at forward and backward rapidity via single muons in p-Pb collisions at √8NN = 5.02 TeV with the ALICE experiment at the LHC. The pp reference using available measurements at 2.76 and 7 TeV and a pQCD-driven method for the scaling to 5.02 TeV is estimated. The measurements of the nuclear modification factor (RpPb) at forward and backward rapidity and forward-to-backward ratio in p-Pb collisions, indicate that cold nuclear matter effects are small over the whole transverse momentum (pT) region at forward rapidity (RpPb compatible with unity within uncertainties). In the backward rapidity, the nuclear modification factor deviates from unity in the intermediate pT region (2


Open Heavy-flavour Measurements Via Muons in Proton-proton and Nucleus-nucleus Collisions with the ALICE Detector at the CERN-LHC

Open Heavy-flavour Measurements Via Muons in Proton-proton and Nucleus-nucleus Collisions with the ALICE Detector at the CERN-LHC

Author: Zuman Zhang

Publisher:

Published: 2018

Total Pages: 0

ISBN-13:

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The study of ultra-relativistic heavy-ion collisions aims at investigating a state of strongly-interacting matter at high energy density and temperature, the Quark-Gluon Plasma (QGP). Heavy quarks (charm and beauty) are predominantly produced in initial hard scattering processes during the early stage of the collisions and experience the full evolution of the medium. Therefore, the measurement of open heavy flavours should provide essential information on the QGP properties. Similar measurements in small systems are also essential for a comprehensible understanding of the QGP properties. The study of open heavy flavours in proton-proton (pp) collisions provides the mandatory reference for measurements in heavy-ion collisions. This thesis presents measurements of the production of muons from heavy-flavour hadron decays at forward rapidity (2.5


Study of Heavy Flavours from Muons Measured with the ALICE Detector in Proton-proton and Heavy-ion Collisions at the CERN-LHC

Study of Heavy Flavours from Muons Measured with the ALICE Detector in Proton-proton and Heavy-ion Collisions at the CERN-LHC

Author: Xiaoming Zhang

Publisher:

Published: 2012

Total Pages: 0

ISBN-13:

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Les collisions d'ions lourds ultra-relativistes ont pour objectif principal l'étude des propriétés de la matière nucléaire soumise à des conditions extrêmes et de température de densité d'énergie. Les calculs de la ChromoDynamique Quantique (QCD) prédisent dans ces conditions une nouvelle phase de la matière dans laquelle on assisterait au déconfinement des constituants des hadrons en un plasma de quarks et gluons (QGP). Les saveurs lourdes (charme et beauté) sont produites lors de processus durs aux premieres instants de la collision puis traversent le milieu produit durant la collision. Par conséquent, la mesure des quarkonia et des saveurs lourdes ouvertes devrait être particulièrement intéressante pour l'étude des propriétés du système créé aux premiers instants de la collision. On s'attend à ce que les saveurs lourdes ouvertes présentent des sensibilités à la densité d'énergie via les mécanismes de perte d'énergie des quarks lourds dans le milieu et que les quarkonia soient sensibles à la température initiale du système via leur dissociation par écrantage de couleur. La mesure du flot des saveurs lourdes devrait apporter des informations concernant le degré de thermalisation des quarks lourds dans le milieu nucléaire. De plus, l'observable viscosité/entropie pourrait être obtenue en combinant les mesures du facteur de modification nucléaire et de flot. En conséquence, l'étude de la production des quqrkonia et saveurs lourdes ouvertes est un domaine de recherche intensément étudié au niveau experimental et théorique. Les mesures effectuées au SPS et RHIC ont permis de mettre en évidence plusieurs caractéristiques du milieu produit mais ont aussi laissé plusieurs questions sans réponse. Avec une énergie par paire de nucléon de 15 fois supérieure à celle du RHIC, le LHC entré en fonctionnement fin 2009, a ouvert une nouvelle ère pour l'étude des propriétés du QGP. Un des plus importants aspects de ce domaine en énergie est l'abondante production de quarks lourds utilisés pour la première fois comme sonde de haute statistique du milieu. Le LHC délivra les premières collisions pp à √s = 0.9 TeV en octobre 2009 et a atteint l'énergie de √s = 7 TeV en mars 2010. Un run pp à √s = 2.76 TeV a eu lieu en mars 2011 pendant une durée limitée. Les runs Pb-Pb à √sNN = 2.76 TeV ont eu lieu fin 2010 et 2011. ALICE (A Large Ion Collider Experiment) est l'expérience dédiée à l'étude des collisions d'ions lourds au LHC. ALICE enregiste aussi des collisions pp afin de tester les calculs perturbatifs de QCD dans la région des faibles valeurs de x-Bjorken et de fournir la référence indispensable pour l'étude des collisions noyau-noyau et p-noyau. ALICE enregistrera aussi, début 2013, des collisions p-Pb/Pb-p afin d'étudier les effets nucléaires froids. Les quarkonia et saveurs lourdes ouvertes sont mesurés dans ALICE suivant leur mode de désintégration (di)-muonique, (di)-electronique et hadronique. Cette thèse concerne l'étude des saveurs lourdes ouvertes dans les collisions pp et Pb-Pb avec les muons simples mesurés aux rapidités avant avec le spectromètre à muons d'ALICE. Le document est structuré comme suit. Le premier chapitre est une introduction à la physique des collisions d'ions lourds et du diagramme de phase de la matière nucléaire. Le deuxième chapitre présente les objectifs de l'étude des saveurs lourdes ouvertes dans les collisions proton-proton, proton-noyau et noyau-noyau. Un intérêt particulier est porté au domaine en énergie du LHC. Le troisième chapitre est une description du détecteur ALICE et du spectromètre à muons. Le quatrième chapitre présente les systèmes "online" et "offline". Le cinquième chapitre est un résumé des performances du spectromètre à muons pour la mesure des saveurs lourdes ouvertes dans les collisions pp au moyen des muons simples et dimuons. Les chapitres 6 à 9 concernent l'analyse de données. (...).


Heavy Flavours

Heavy Flavours

Author: A J Buras

Publisher: World Scientific

Published: 1992-11-26

Total Pages: 803

ISBN-13: 9814602825

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This volume is a collection of review articles on the most outstanding topics in heavy flavour physics. All the authors have made significant contributions to this field. The book reviews in detail the theoretical structure of heavy flavour physics within the Standard Model and its confrontation with existing experimental data.The physics of the top quark and of the Higgs play an important role in this volume. Beginning with radiative electroweak corrections and their impressive tests at LEP and hadron colliders, the book summarizes the present status of quark mixing, CP violation and rare decays. The dynamics of exclusive D- and B-meson decays, the τ-lepton physics and the newly discovered heavy quark symmetries are discussed in detail. The impact of strong interactions on weak decays is clearly visible in many articles. The physics of heavy flavours at LEP, HERA and hadron colliders constitutes an important part of the book. Another significant topic is the possible role of heavy flavours in the spontaneous symmetry breaking of gauge symmetries. Finally the most recent advances in lattice calculations of the properties of heavy flavours and the lattice studies of the dynamics of heavy flavours are presented.


Hadron Collider Physics 2005

Hadron Collider Physics 2005

Author: Mario Campanelli

Publisher: Springer Science & Business Media

Published: 2007-08-17

Total Pages: 360

ISBN-13: 3540328416

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This book gathers the proceedings of The Hadron Collider Physics Symposia (HCP) 2005, and reviews the state-of-the-art in the key physics directions of experimental hadron collider research. Topics include QCD physics, precision electroweak physics, c-, b-, and t-quark physics, physics beyond the Standard Model, and heavy ion physics. The present volume serves as a reference for everyone working in the field of accelerator-based high-energy physics.


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

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

Author: [Study Group] ATLAS Collaboration CERN

Publisher:

Published: 2022

Total Pages: 0

ISBN-13:

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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


The Large Hadron Collider

The Large Hadron Collider

Author: Lyndon R. Evans

Publisher: EPFL Press

Published: 2009-01-01

Total Pages: 264

ISBN-13: 9782940222346

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Describes the technology and engineering of the Large Hadron collider (LHC), one of the greatest scientific marvels of this young 21st century. This book traces the feat of its construction, written by the head scientists involved, placed into the context of the scientific goals and principles.


Heavy Flavour Decay Muon Production at Forward Rapidity in Proton-proton Collisions at √s

Heavy Flavour Decay Muon Production at Forward Rapidity in Proton-proton Collisions at √s

Author: Betty Abelev

Publisher:

Published: 2012

Total Pages: 0

ISBN-13:

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The production of muons from heavy flavour decays is measured at forward rapidity in proton-proton collisions at √s=7 TeV collected with the ALICE experiment at the LHC. The analysis is carried out on a data sample corresponding to an integrated luminosity Lint=16.5 nb-1. The transverse momentum and rapidity differential production cross sections of muons from heavy flavour decays are measured in the rapidity range 2.5