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Transport Properties of the Quark Gluon Plasma

Transport Properties of the Quark Gluon Plasma
Author: Çaḡlar Doḡan
Publisher:
Total Pages: 134
Release: 2008
Genre:
ISBN: 9780549600725

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We use kinetic theory to investigate two transport properties of high temperature Quark Gluon Plasma (QGP) in the weak coupling limit. Bulk viscosity of QGP is calculated along with the splitting/joining functions in the deep Landau-Pomeranchuk-Migdal (LPM) regime.


Quark-gluon Plasma 4

Quark-gluon Plasma 4
Author: Rudolph C. Hwa
Publisher: World Scientific
Total Pages: 450
Release: 2010
Genre: Science
ISBN: 9814293296

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This is a review volume containing articles written by experts on current theoretical topics in the subject of Quark-Gluon Plasma created in heavy-ion collisions at high energy. It is the fourth volume in the series with the same title sequenced numerically. The articles are written in a pedagogical style so that they can be helpful to a wide range of researchers from graduate students to mature physicists who have not worked previously on the subject. A reader should be able to learn from the reviews without having extensive knowledge of the background literature.


Transport Properties of Quark and Gluon Plasmas

Transport Properties of Quark and Gluon Plasmas
Author:
Publisher:
Total Pages: 13
Release: 1993
Genre:
ISBN:

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The kinetic properties of relativistic quark-gluon and electron-photon plasmas are described in the weak coupling limit. The troublesome Rutherford divergence at small scattering angles is screened by Debye screening for the longitudinal or electric part of the interactions. The transverse or magnetic part of the interactions is effectively screened by Landau damping of the virtual photons and gluons transferred in the QED and QCD interactions respectively. Including screening a number of transport coefficients for QCD and QED plasmas can be calculated to leading order in the interaction strength, including rates of momentum and thermal relaxation, electrical conductivity, viscosities, flavor and spin diffusion of both high temperature and degenerate plasmas. Damping of quarks and gluons as well as color diffusion in quark-gluon plasmas is, however, shown not to be sufficiently screened and the rates depends on an infrared cut-off of order the ''magnetic mass, '' m{sub mag} (approximately) g2T.


Quark-gluon Plasma, Heavy Ion Collisions And Hadrons

Quark-gluon Plasma, Heavy Ion Collisions And Hadrons
Author: Edward V Shuryak
Publisher: World Scientific
Total Pages: 633
Release: 2024-02-28
Genre: Science
ISBN: 9811282366

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This third book on Quark-Gluon plasma and heavy ion collisions follows the previous ones, published in 1988 and 2005, that described theoretical proposals for a large program, and then the QGP discovery at RHIC.The present one describes the rather mature field, with extensive program at RHIC and LHC colliders and corresponding theory. QGP turns out to be a strongly coupled medium made up of quarks and gluons, existing in exploding fireballs. It is the hottest form of matter created in a laboratory. Other subjects discussed in the book are QCD vacuum structure, including topological solitons and nonperturbative phenomena. It also includes some recent progress in theory of hadrons, bridging hadronic spectroscopy with partonic observables.


Quark-Gluon Plasma: Theoretical Foundations

Quark-Gluon Plasma: Theoretical Foundations
Author: J. Kapusta
Publisher: Gulf Professional Publishing
Total Pages: 850
Release: 2003-11-25
Genre: Science
ISBN: 9780444511102

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The purpose of this volume is to trace the development of the theoretical understanding of quark-gluon plasma, both in terms of the equation of state and thermal correlation functions and in terms of its manifestation in high energy nuclear collisions. Who among us has not wondered how tall a mountain is on a neutron star, what happens when matter is heated and compressed to higher and higher densities, what happens when an object falls into a black hole, or what happened eons ago in the early universe? The study of quark-gluon plasma is related in one way or another to these and other thought provoking questions. Oftentimes the most eloquent exposition is given in the original papers. To this end a selection is made of what are the most important pioneering papers in this field. The early 1950s was an era when high energy multiparticle production in cosmic ray interactions attracted the attention of some of the brightest minds in physics, and so it should be no surprise that the first reprinted papers deal with the introduction of statistical models of particle production. The quark model arose in the 1960s, while QCD as such was recognized as the theory of the strong interactions in the 1970's. The behavior of matter at high temperatures and supranuclear densities became of wide interest in the nuclear and particle physics communities starting in the 1970s, which is when the concept of quark-gluon plasma became established. The history of the field has been traced up to the early 1990s. There are three reasons for stopping at that point in time. First, most of the key theoretical concepts and formalisms arose before 1993, although many of them continue to be developed today and hopefully well into the future. Second, papers written after 1992 are much more readily available than those writen before due to the advent of the World Wide Web and its electronic preprint databases and journals. Finally, in making this collection of reprints available as hardcopy one is limited in the number of pages, and some papers in the present selection should have been deleted in order to make room for post-1993 papers. For the same reason the subject focus must of necessity be limited, which means that in this reprint collection two wide subject areas are not addressed: the behavior of nuclear matter under extreme conditions is not reported, nor is quark matter in neutron stars. The broad categories into which the material has been placed, reflect the diverse studies of quark-gluon plasma and its manifestation. They are: phase-space models of particle production, perturbative QCD plasma, lattice gauge theory, fluid dynamics and flow, strangeness, heavy flavor (charm), electromagnetic signals, parton cascade and minijets, parton energy loss and jet quenching, Hanbury Brown--Twiss (HBT) interferometry, disoriented chiral condensates, phase transition dynamics and cosmology, and color superconductivity. Each chapter is prefaced by an introduction, which contains a list of significant papers which is more complete than the reprinted papers, though by no means exhaustive. It also contains citations to most relevant papers published up to the date of completion of this volume (fall 2002). It is hoped that the short reviews will help bring the reader up to date on the latest developments. The selection of papers cited in each chapter, and in particular the ones selected for reprinting, is solely the responsibility of the Editors. It is based on their best judgement and experience in this field dating back to the mid-1970s. In order to be reprinted a paper must have been pioneering in the sense of originality and impact on the field. Generally they have been cited over a hundred times by other papers published in refereed journals. The final selection was reviewed and discussed among the Editors repeatedly. Just because a paper is not included does not mean they do not know of it or do not have a high regard for it. All of the papers cited or reprinted are original research contributions. There are three other types of publications listed. The first is a compilation of books. The second is a list of reviews, many of which contain a significant amount of original material. The third is a list of the proceedings of the series of Quark Matter meetings, the primary series of international conferences in this field that is attended by both theorists and experimentalists.


Quark-Gluon Plasma 2

Quark-Gluon Plasma 2
Author: Rudolph C. Hwa
Publisher: World Scientific
Total Pages: 796
Release: 1995
Genre: Science
ISBN: 9789810223991

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This is a sequel to the review volume Quark-Gluon Plasma. There are 13 articles contributed by leading investigators in the field, covering a wide range of topics about the theoretical approach to the subject. These contributions are timely reviews of nearly all the actively pursued problems, written in a pedagogical style suitable for beginners as well as experienced researchers.


Characterizing the Quark Gluon Plasma Using Soft Thermal Fluctuations and Hard Parton Interactions

Characterizing the Quark Gluon Plasma Using Soft Thermal Fluctuations and Hard Parton Interactions
Author: Mayank Singh
Publisher:
Total Pages:
Release: 2021
Genre:
ISBN:

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"Heavy ion collision experiments at the Large Hadron Collider (LHC) in Europe and at the Relativistic Heavy Ion Collider (RHIC) in the USA create deconfined Quark Gluon Plasma (QGP). QGP is a high density, high temperature, extreme state of strongly interacting matter. Properties of QGP are deduced by matching phenomenological calculations to experimental data. For an accurate extraction of QGP properties, all the relevant physical processes should be accounted for in a phenomenological model. We have investigated the effects of soft thermal fluctuations and hard parton interactions on experimental observables. We develop a new method to study soft thermal fluctuations using low pass noise filters. We also developed a framework to simultaneously evolve the jets and the QGP medium and introduced minijets in QGP simulations. The energy and momentum lost by minijets is introduced via hydrodynamic source terms in QGP. We also evaluated the size of viscous corrections on heavy quark transport coefficients. We observed that these physical processes affect the experimental observables, requiring a likely recalibration of QGP transport coefficients"--


Quark-gluon Plasma

Quark-gluon Plasma
Author: Rudolph C. Hwa
Publisher: World Scientific Publishing Company Incorporated
Total Pages: 712
Release: 1990
Genre: Science
ISBN: 9789971509002

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This volume contains 14 review articles on the theory and phenomenology of the creation and diagnosis of quark-gluon plasma. They are written by active investigators of in the various research topics, which range from the QCD foundation through transport theory and thermalization models to the examination of possible signatures. The monograph should be useful not only to the experienced researchers in the subject but also to newcomers.