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The standard model for relativistic heavy-ion collisions and electromagnetic tomographyShen, Chun 15 October 2014 (has links)
No description available.
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ELLIPTIC FLOW STUDY OF CHARMED MESONS IN 200 GEV AU+AU COLLISIONS AT THE RELATIVISTIC HEAVY ION COLLIDERHamad, Ayman I.A 06 July 2017 (has links)
No description available.
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Reverse engineering of heavy-ion collisions : unraveling initial conditions from anisotropic flow dataRetinskaya, Ekaterina 10 June 2014 (has links) (PDF)
Ultra-Relativistic heavy-ion physics is a promising field of high energy physics connecting two fields: nuclear physics and elementary particle physics. Experimental achievements of the last years have provided an opportunity to study the properties of a new state of matter created in heavy-ion collisions called quark-gluon plasma. The initial state of two colliding nuclei is affected by fluctuations coming from wave- functions of nucleons. These fluctuations lead to the momentum anisotropy of the hadronic matter which is observed by the detectors. The system created in the collision behaves like a fluid, so the initial state is connected to the final state via hydrodynamic evolution. In this thesis we model the evolution with relativistic viscous hydrodynamics. Our results, combined with experimental data, give non trivial constraints on the initial state, thus achieving "reverse engineering" of the heavy-ion collisions. The observable which characterizes the momentum anisotropy is the anisotropic flow vn. We present the first measurements of the first harmonic of the anisotropic flow called directed flow v1 in Pb-Pb collisions at the LHC. We then perform the first viscous hydrodynamic modeling of directed flow and show that it is less sensitive to viscosity than higher harmonics. Comparison of these experimental data with the modeling allows to extract the values of the dipole asymmetry of the initial state, which provides constraints on the models of initial states. A prediction for directed flow v1 in Au-Au collisions is also made for RHIC. We then perform a similar modeling of the second and third harmonics of the anisotropic flow, called respectively elliptic v2 and triangular v3 flow. A combined analysis of the elliptic and triangular flow data compared with viscous hydrodynamic calculations allows us to put constraints on initial ellipticity and triangularity of the system. These constraints are then used as a filter for different models of initial state. At the end of this thesis, we show perspectives in the studies of the initial state which are opened by recent measurements of event-plane correlations which could shed light on the initial state fluctuations.
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Produção de estranheza em colisões de íons pesados relativísticos / Strangeness production in relkativistic heavy ion collisionsVasconcelos, Geraldo Magela Severino 30 May 2008 (has links)
Orientador: Jun Takahashi / Dissertação (mestrado) - Universidade Estadual de Campinas, Instituto de Fisica Gleb Wataghin / Made available in DSpace on 2018-08-11T10:21:35Z (GMT). No. of bitstreams: 1
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Previous issue date: 2008 / Resumo: As colisões de íons pesados em energias relativísticas permitem estudar o comportamento da matéria nuclear em condições extremas de temperatura e alta densidade de energia. Nessas condições, espera-se uma transição de fase da matéria onde seria formado um estado de quarks e glúons livres, conhecido como Plasma de Quarks e Glúons (QGP). Com o objetivo de estudar a formação deste novo estado e suas características, o experimento STAR, situado no Laboratório Nacional de Brookhaven, Nova Iorque, mede vários canais observáveis das colisões de íons pesados. Uma das marcas da formação do QGP é o aumento da produção de estranheza. O objetivo deste trabalho foi estudar a produção dos bárions multi-estranhos X e W produzidos nas colisões de Cu+Cu com energia de 62,4 GeV=A no referencial do centro de massa (CM), medidos no experimento STAR. Foram obtidos os espectros de momento transverso dessas partículas e a partir deles foi extraída a abundância de produção por unidade de rapidez na região de rapidez central (dN=dy)y=0. A produção desses bárions foi comparada com os resultados de um outro sistema (Au+Au) na mesma energia para estudar a dependência da produção de estranheza em função do tamanho do sistema formado. Os resultados mostraram que a produção de estranheza cresce com o tamanho do sistema, e que este aumento é ligeiramente maior para o sistema de Cu+Cu do que Au+Au. Os resultados deste trabalho são inéditos e complementam um estudo sistemático da produção de estranheza. Também são importantes para a compreensão dos mecanismos de produção de estranheza em diferentes energias / Abstract: Relativistic heavy-ion collisions allow us to study the behavior of nuclear matter at extreme conditions of temperature and energy density. In these conditions, we expect a phase transition of matter where a free state of quarks and gluons would be formed, and that is known as Quark-Gluon Plasma (QGP). With the aim to study this new state of matter and its features, the STAR experiment was built at BNL (Brookhaven National Laboratory), New York. The STAR experiment measures many observables of heavy-ion collisions and in particular, the strangeness enhancement in QGP is of special interest. The aim of this work was the study of multi-strange baryon production, X and W , at collisions of Cu+Cu in the center of mass energy of 62.4 GeV=A measured at the STAR experiment. Transverse momentum spectra and integrated yields for X and W at mid-rapidity are presented in this work. We also compared Cu+Cu and Au+Au systems in order to study the dependence of strange particle production with the system size. The results showed that strangeness production enhances with the system size, and strange baryons yields in Cu+Cu are slightly larger than Au+Au for the same energy. The new results obtained here complement a systematic study of strangeness production in heavy ion collisions and are important to understand the strangeness particle production mechanism in different energies / Mestrado / Física Nuclear / Mestre em Física
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Estudo dos efeitos de flutuações da condição inicial em colisões nucleares relativísticas / Study of the effects of initial condition fluctuations in relativistic nuclear collisionsSouza, Rafael Derradi de, 1982- 23 August 2018 (has links)
Orientador: Jun Takahashi / Tese (doutorado) - Universidade Estadual de Campinas, Instituto de Fisica Gleb Wataghin / Made available in DSpace on 2018-08-23T16:49:52Z (GMT). No. of bitstreams: 1
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Previous issue date: 2013 / Resumo: Nas colisões nucleares relativísticas, devido ao comportamento coletivo do sistema, é esperado que a anisotropia espacial inicial da região de uperposição entre os núcleos incidentes seja convertida em uma anisotropia final na distribuição de momento das partículas produzidas. Em particular, o coeficiente de fluxo elíptico, dado pelo segundo harmônico (v2) da decomposição de Fourier da distribuição azimutal das partículas finais produzidas, é um observável sensível à anisotropia geométrica inicial. Neste trabalho, estudamos o comportamento do coeficiente v2 obtido a partir de eventos gerados com o código de evolução hidrodinâmica NeXSPheRIO simulando colisões Au+Au a (SNN)1/2 = 200 GeV. O NeXSPheRIO permite o controle da condição inicial, da evolução hidrodinâmica e gera as partículas finais como em um evento real. Portanto, foi possível aplicar as mesmas técnicas de análise de dados utilizadas experimentalmente. Estudamos os efeitos de flutuações na condição inicial no observável v2 e testamos alguns observáveis experimentais propostos que seriam sensíveis a estas flutuações. Como os observáveis também são sensíveis a outros tipos de correlações, geralmente chamadas de non-flow, e considerando que a maior contribuição pode vir de jatos de partículas gerados nessas colisões, estudamos os efeitos de jatos nesses observáveis. Construímos um modelo simplificado de duas componentes a partir da superposição de eventos NeXSPheRIO, com eventos de colisões p+p produzidos pelo gerador de eventos Pythia. Resultados deste modelo descrevem melhor a dependência de v2 com o momento transversal quando comparados com dados experimentais. Determinamos também que, ao contrário do que se esperava, os observáveis sensíveis à flutuação na condição inicial são pouco afetados pela inclusão dos jatos. Este resultado sugere que os efeitos de non-flow, como considerados aqui, são desprezíveis nas medidas de flutuações de v2, indicando que os resultados obtidos pelos experimentos sejam dominados pelas flutuações da condição inicial / Abstract: Due to the collective behavior of the system created in relativistic nuclear collisions, it is expected that the initial spatial anisotropy of the overlap region between the two incoming nuclei converts into an anisotropy of the momentum distribution of the outgoing particles. In particular, the elliptic flow coefficient, which is given by the second harmonic (v2) of the Fourier decomposition of the final particle azimuthal distribution, is an observable sensitive to the initial geometric anisotropy. In this work, we studied the behavior of the elliptic flow coefficient obtained from events generated using the hydrodynamic-based code NeXSPheRIO for Au+Au collisions at (SNN)1/2= 200 GeV. The NeXSPheRIO code allows the control of the initial condition, the hydrodynamic evolution and produces the outgoing particles just like in a real event. Therefore, it was possible to apply the same data analysis techniques used experimentally. We studied the effects of initial condition fluctuations on flow observables and tested some experimental observables thought to be sensitive to the fluctuations. Since these observables are also sensitive to other types of correlations, usually referred to as non-flow, and considering that the major contribution to them may come from jets of particles generated in the collision, we also studied the effects of jets on these observables. A simplified two-component model was built by superimposing events produced with the NeXSPheRIO code and p+p collision events produced with the Pythia event generator. Results from our model present a better description of the ?2 dependence with transverse momentum when compared to experimental data. Also, opposite to what was expected, the observables sensitive to the fluctuations are not much sensitive to the inclusion of jets. This result may suggest that the contribution of non-flow, as considered here, is negligible in the observed flow fluctuations measurement, which indicates that the values observed in the experiments are mainly dominated by fluctuations from the initial condition / Doutorado / Física / Doutor em Ciências
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INVESTIGATION OF NUCLEAR COMPRESSION IN THE AMPT MODELOF NUCLEUS-NUCLEUS COLLISIONSAlalawi, Huda 28 November 2018 (has links)
No description available.
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NON-EQUILIBRIUM HYDRODYNAMICS OF THE QUARK-GLUON PLASMAMohammad, Nopoush 11 April 2019 (has links)
No description available.
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Mesure de la section efficace de production des hadrons lourds avec le spectromètre à muons d'ALICE au LHC / Heavy Flavour production with the ALICE muon spectrometerManceau, Loïc 01 October 2010 (has links)
Les calculs de chromodynamique quantique sur réseau prévoient, que pour un potentiel baryonique nul et une température de T ∼ 173 MeV , il devrait être possible d'observer une transition de la phase de la matière hadronique vers un plasma de quarks et de gluons. Les collisions d'ions lourds ultra-relativistes devraient permettre de mettre en évidence ce changement de phase. Les saveurs lourdes peuvent être utilisées pour sonder les premiers instants des collisions pendant lesquels la température est la plus élevée. Le LHC va permettre d'étudier les collisions entre noyaux de plomb et les collisions entre protons à une énergie jamais égalée : √s = 5.5 TeV (√sNN = 14 TeV ) pour le plomb (les protons). Le détecteur ALICE est dédié à l'étude des collisions d'ions lourds mais peut également mesurer les collisions entre protons. Il est équipé d'un spectromètre à muons conçu pour l'étude des saveurs lourdes. Cette thèse présente les performances du spectromètre pour la mesure de la section efficace de production inclusive des hadrons beaux (B) et charmés (D) dans les collisions proton-proton. La première étape de cette mesure consiste à extraire les distributions des muons de décroissance des hadrons B et D. L'étape suivante consiste à extrapoler les distributions aux sections efficaces de production inclusive des hadrons. Cette thèse contient également une étude préliminaire des performances du spectromètre pour la mesure du rapport de modification nucléaire et de l'observable associée nommée RB=D dans les collisions plomb-plomb de centralité0−10%. L'accent est porté sur les incertitudes et l'intervalle en impulsion transverse sur lequel ces observables pourront être mesurées. / Lattice quantum chromodynamics calculations predict a transition from the phase of hadronic matter to quark and gluon plasma for a temperature T ∼ 173 MeV and a vanishing baryonic potential. Ultra-relativistic heavy ion collisions allow to highlight this phase transition. Heavy flavours can be used to probe the first instants of the collisions where the temperature is the highest. The LHC will provide proton-proton and lead-lead collisions at unprecedented large energy (√s = 14 TeV and √sNN = 5.5 TeV respectively). The ALICE detector is dedicated to heavy ion collisions but it can also measure proton-proton collisions. The detector includes a muon spectrometer. The spectrometer has been disigned to measure heavy flavours. This PhD thesis presents the performance of the spectrometer to measure beauty hadrons (B) and charmed hadrons (D) inclusive production cross-section in proton-proton collisions. The first step of the measurement consists in extracting heavy hadron decayed muon distributions. The next step consists in extrapolating these distributions to heavy hadrons inclusive production cross-section. This PhD thesis also presents a preliminary study of the performance of the spectrometer for the measurement of the nuclear modification factor and the associated observable named RB=D in 0−10% central heavy ions collisions. Uncertainties and transverse impulsion range of extraction of the observables have been investigated.
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Study of heavy flavours from muons measured with the ALICE detector in proton-proton and heavy-ion collisions at the CERN-LHC / Etude des arômes lourds de muons mesurés avec le détecteur ALICE dans les collisions proton-proton et ions lourds au CERN-LHCZhang, Xiaoming 23 May 2012 (has links)
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. (...) / Résumé indisponible
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