Modification of K0s and Lambda(AntiLambda) Transverse Momentum Spectra in Pb-Pb Collisions at √sNN = 2.76 TeV with ALICE

Modification of K0s and Lambda(AntiLambda) Transverse Momentum Spectra in Pb-Pb Collisions at √sNN = 2.76 TeV with ALICE
Title Modification of K0s and Lambda(AntiLambda) Transverse Momentum Spectra in Pb-Pb Collisions at √sNN = 2.76 TeV with ALICE PDF eBook
Author Simone Schuchmann
Publisher Springer
Total Pages 207
Release 2016-09-01
Genre Science
ISBN 3319434586

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This thesis offers an excellent, comprehensive introduction to the physics of the quark–gluon plasma. It clearly explains the connection between theory and experiment, making the topic accessible to non-specialists in this field. The experimental work, which contributes significantly to our understanding of the quark–gluon plasma, is described in great detail. The results described in the final chapters of the thesis provide interesting new ideas about the connection between proton-proton and Pb-Pb collisions. Simone Schuchmann received the 'ALICE Thesis Award 2016' for this excellent work.

Modification of K0s and Λ(Λ̄) Transverse Momentum Spectra in Pb-Pb Collisions at √sNN

Modification of K0s and Λ(Λ̄) Transverse Momentum Spectra in Pb-Pb Collisions at √sNN
Title Modification of K0s and Λ(Λ̄) Transverse Momentum Spectra in Pb-Pb Collisions at √sNN PDF eBook
Author Simone Schuchmann
Publisher
Total Pages 0
Release 2015
Genre
ISBN

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Properties of QCD Matter at High Baryon Density

Properties of QCD Matter at High Baryon Density
Title Properties of QCD Matter at High Baryon Density PDF eBook
Author Xiaofeng Luo
Publisher Springer Nature
Total Pages 294
Release 2023-01-01
Genre Science
ISBN 9811944415

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This book highlights the discussions by renown researchers on questions emerged during transition from the relativistic heavy-ion collider (RHIC) to the future electron ion collider (EIC). Over the past two decades, the RHIC has provided a vast amount of data over a wide range of the center of mass energies. What are the scientific priorities, after RHIC is shut down and turned to the future EIC? What should be the future focuses of the high-energy nuclear collisions? What are thermodynamic properties of quantum chromodynamics (QCD) at large baryon density? Where is the phase boundary between quark-gluon-plasma and hadronic matter at high baryon density? How does one make connections from thermodynamics learned in high-energy nuclear collisions to astrophysical topics, to name few, the inner structure of compact stars, and perhaps more interestingly, the dynamical processes of the merging of neutron stars? While most particle physicists are interested in Dark Matter, we should focus on the issues of Visible Matter! Multiple heavy-ion accelerator complexes are under construction: NICA at JINR (4 ~ 11 GeV), FAIR at GSI (2 ~ 4.9 GeV SIS100), HIAF at IMP (2 ~ 4 GeV). In addition, the heavy-ion collision has been actively discussed at the J-PARC. The book is a collective work of top researchers from the field where some of the above-mentioned basic questions will be addressed. We believe that answering those questions will certainly advance our understanding of the phase transition in early universe as well as its evolution that leads to today's world of nature.

Measurement of the D0 Meson Production in Pb–Pb and p–Pb Collisions

Measurement of the D0 Meson Production in Pb–Pb and p–Pb Collisions
Title Measurement of the D0 Meson Production in Pb–Pb and p–Pb Collisions PDF eBook
Author Andrea Festanti
Publisher Springer
Total Pages 174
Release 2016-09-07
Genre Science
ISBN 3319434551

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This thesis presents the first measurement of charmed D0 meson production relative to the reaction plane in Pb–Pb collisions at the center-of-mass energy per nucleon-nucleon collision of √sNN = 2.76 TeV. It also showcases the measurement of the D0 production in p–Pb collisions at √sNN = 5.02 TeV with the ALICE detector at the CERN Large Hadron Collider. The measurement of the D0 azimuthal anisotropy with respect to the reaction plane indicates that low- momentum charm quarks participate in the collective expansion of the high-density, strongly interacting medium formed in ultra-relativistic heavy-ion collisions, despite their large mass. This behavior can be explained by charm hadronization via recombination with light quarks from the medium and collisional energy loss. The measurement of the D0 production in p–Pb collisions is crucial to separate the effect induced by cold nuclear matter from the final- state effects induced by the hot medium formed in Pb–Pb collisions. The D0 production in p–Pb collisions is consistent with the binary collision scaling of the production in pp collisions, demonstrating that the modification of the momentum distribution observed in Pb–Pb collisions with respect to pp is predominantly induced by final-state effects such as the charm energy loss.

High-pT Physics in the Heavy Ion Era

High-pT Physics in the Heavy Ion Era
Title High-pT Physics in the Heavy Ion Era PDF eBook
Author Jan Rak
Publisher Cambridge University Press
Total Pages 399
Release 2013-04-25
Genre Science
ISBN 0521190290

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One of few books to address both high-pT physics and relativistic heavy ion collisions. Essential handbook for graduates and researchers.

Relativistic Heavy Ion Physics

Relativistic Heavy Ion Physics
Title Relativistic Heavy Ion Physics PDF eBook
Author Reinhard Stock
Publisher Springer Science & Business Media
Total Pages 701
Release 2010-04-01
Genre Science
ISBN 3642015387

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This new volume, I/23, of the Landolt-Börnstein Data Collection series continues a tradition inaugurated by the late Editor-in-Chief, Professor Werner Martienssen, to provide in the style of an encyclopedia a summary of the results and ideas of Relativistic Heavy Ion Physics. Formerly, the Landolt-Börnstein series was mostly known as a compilation of numerical data and functional relations, but it was felt that the more comprehensive summary undertaken here should meet an urgent purpose. Volume I/23 reports on the present state of theoretical and experimental knowledge in the field of Relativistic Heavy Ion Physics. What is meant by this rather technical terminology is the study of strongly interacting matter, and its phases (in short QCD matter) by means of nucleus-nucleus collisions at relativistic energy. The past decade has seen a dramatic progress, and widening of scope in this field, which addresses one of the chief remaining open frontiers of Quantum Chromodynamics (QCD) and, in a wider sense, the "Standard Model of Elementary Interactions". The data resulting from the CERN SPS, BNL AGS and GSI SIS experiments, and in particular also from almost a decade of experiments carried out at the "Relativistic Heavy Ion Collider"(RHIC) at Brookhaven, have been fully analyzed, uncovering a wealth of information about both the confined and deconfined phases of QCD at high energy density.

Phenomenology of Ultra-Relativistic Heavy-Ion Collisions

Phenomenology of Ultra-Relativistic Heavy-Ion Collisions
Title Phenomenology of Ultra-Relativistic Heavy-Ion Collisions PDF eBook
Author Wojciech Florkowski
Publisher World Scientific Publishing Company
Total Pages 436
Release 2010-03-24
Genre Science
ISBN 9813107596

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This book gives an introduction to main ideas used in the physics of ultra-relativistic heavy-ion collisions. The links between basic theoretical concepts (discussed gradually from the elementary to more advanced level) and the results of experiments are outlined, so that experimentalists may learn more about the foundations of the models used by them to fit and interpret the data, while theoreticians may learn more about how different theoretical ideas are used in practical applications. The main task of the book is to collect the available information and establish a uniform picture of ultra-relativistic heavy-ion collisions. The properties of hot and dense matter implied by this picture are discussed comprehensively. In particular, the issues concerning the formation of the quark–gluon plasma in present and future heavy-ion experiments are addressed.