Electromagnetic Probes in Heavy-ion Collisions - Messengers from the Hot and Dense Phase

Electromagnetic Probes in Heavy-ion Collisions - Messengers from the Hot and Dense Phase
Author: Hendrik van Hees
Publisher:
Total Pages: 0
Release: 2015
Genre:
ISBN:

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Due to their penetrating nature, electromagnetic probes, i.e., lepton-antilepton pairs (dileptons) and photons are unique tools to gain insight into the nature of the hot and dense medium of strongly-interacting particles created in relativistic heavy-ion collisions, including hints to the nature of the restoration of chiral symmetry of QCD. Of particular interest are the spectral properties of the electromagnetic current-correlation function of these particles within the dense and/or hot medium. The related theoretical investigations of the in-medium properties of the involved particles in both the partonic and hadronic part of the QCD phase diagram underline the importance of a proper understanding of the properties of various hadron resonances in the medium.

From E+e? to Heavy Ion Collisions

From E+e? to Heavy Ion Collisions
Author: Tamas Csorgo
Publisher: World Scientific
Total Pages: 664
Release: 2001
Genre: Science
ISBN: 9789810246556

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This book covers various experimental and theoretical aspects of multiparticle production in high energy interactions from lepton-lepton, lepton-hadron, hadron-hadron, hadron-nucleus and heavy ion collisons. This is the first time that data from CERN LEP, FNAL, DESY, BNL AGS, CERN SPS and BNL RHIC have been collected in a single volume. Not only accelerator-induced reactions but also cosmic ray interactions of very high energy are discussed, and the up-to-date theoretical interpretations are summarized.

Final Report for Project ``Theory of Ultra-relativistic Heavy-ion Collisions''

Final Report for Project ``Theory of Ultra-relativistic Heavy-ion Collisions''
Author:
Publisher:
Total Pages: 55
Release: 2012
Genre:
ISBN:

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In the course of this project the Ohio State University group led by the PI, Professor Ulrich Heinz, developed a comprehensive theoretical picture of the dynamical evolution of ultra-relativistic heavy-ion collisions and of the numerous experimental observables that can be used to diagnose the evolving and short-lived hot and dense fireball created in such collisions. Starting from a qualitative understanding of the main features based on earlier research during the last decade of the twentieth century on collisions at lower energies, the group exploited newly developed theoretical tools and the stream of new high-quality data from the Relativistic Heavy Ion Collider at Brookhaven National Laboratory (which started operations in the summer of the year 2000) to arrive at an increasingly quantitative description of the experimentally observed phenomena. Work done at Ohio State University (OSU) was instrumental in the discovery during the years 2001-2003 that quark-gluon plasma (QGP) created in nuclear collisions at RHIC behaves like an almost perfect liquid with minimal viscosity. The tool of relativistic fluid dynamics for viscous liquids developed at OSU in the years 2005-2007 opened the possibility to quantitatively determine the value of the QGP viscosity empirically from experimental measurements of the collective flow patterns established in the collisions. A first quantitative extraction of the QGP shear viscosity, with controlled theoretical uncertainty estimates, was achieved during the last year of this project in 2010. OSU has paved the way for a transition of the field of relativistic heavy-ion physics from a qualitative discovery stage to a new stage of quantitative precision in the description of quark-gluon plasma properties. To gain confidence in the precision of our theoretical understanding of quark-gluon plasma dynamics, one must test it on a large set of experimentally measured observables. This achievement report demonstrates that we have, at different times, systematically investigated both so-called ``soft" and ``hard, penetrating" probes of the fireball medium: hadron yields and momentum spectra and their anisotropies, two-particle momentum correlations, high-energy partons fragmenting into jets, heavy quarks and heavy-flavor mesons, and electromagnetic probes (photons and dileptons). Our strongest emphasis, and our most significant achievements, has, however, always remained on understanding the bulk behavior of the heavy-ion fireball medium, for which soft probes provide the most abundantly available data and thus the most stringent constraints.

Hard Probes in Heavy-ion Collisions at the LRC

Hard Probes in Heavy-ion Collisions at the LRC
Author: European Organization for Nuclear Research
Publisher:
Total Pages: 512
Release: 2004
Genre: Effective interactions (Nuclear physics)
ISBN:

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The Beginning and End of Relativistic Heavy Ion Collisions: Using Uranium Beams and Bose-Einstein Correlations as Probes of the Collision Fireball

The Beginning and End of Relativistic Heavy Ion Collisions: Using Uranium Beams and Bose-Einstein Correlations as Probes of the Collision Fireball
Author: Anthony Joseph Kuhlman (Jr)
Publisher:
Total Pages: 226
Release: 2007
Genre:
ISBN: 9780549076629

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The final chapter focuses on the development of a non-relativistic formalism to describe the effects of final state interactions on the measured radii. We present this formula and examine its behavior in various limits. We then pursue approximations to this expression to produce a more practical result. In the limit of a weak interaction with the medium, we produce a surprisingly straightforward result.

Soft and Hard Probes of QCD Topological Structures in Relativistic Heavy-Ion Collisions

Soft and Hard Probes of QCD Topological Structures in Relativistic Heavy-Ion Collisions
Author: Shuzhe Shi
Publisher: Springer Nature
Total Pages: 148
Release: 2019-08-30
Genre: Science
ISBN: 3030254828

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This thesis makes significant advances in the quantitative understanding of two intrinsically linked yet technically very different phenomena in quantum chromodynamics (QCD). Firstly, the thesis investigates the soft probe of strong interaction topological fluctuations in the quark-gluon plasma (QGP) which is made possible via the anomalous chiral transport effects induced by such fluctuations. Here, the author makes contributions towards establishing the first comprehensive tool for quantitative prediction of the chiral magnetic effect in the QGP that is produced in heavy ion collision experiments. Secondly, the thesis deals with the hard probe of strongly coupled QGP created in heavy-ion collisions. In particular, this study addresses the basic question related to the nonperturbative color structure in the QGP via jet energy loss observables. The author further develops the CUJET computational model for jet quenching and uses it to analyze the topological degrees of freedom in quark-gluon plasma. The contributions this thesis makes towards these highly-challenging problems have already generated widespread impacts in the field of quark-gluon plasma and high-energy nuclear collisions.

Proceedings of the 31st International Conference on High Energy Physics ICHEP 2002

Proceedings of the 31st International Conference on High Energy Physics ICHEP 2002
Author: S. Bentvelsen
Publisher: Elsevier
Total Pages: 1004
Release: 2012-12-02
Genre: Science
ISBN: 0444599169

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The first precision measurements on CP violation in the B system are reported. Both the BELLE and the BABAR collaboration presented, among others, results for sin 2ß with much improved accuracy. Results from the Sudbury Neutrino Observatory, SNO, also deserve to be mentioned. The convincing evidence of solar neutrino oscillations had been presented by SNO prior to the conference; a full presentation was given at the conference. An incredibly precise measurement of the anomalous magnetic moment of the muon is reported, a fresh result from the Brookhaven National Laboratory. Apart from these distinct physics highlights, there are also the first results from the new Tevatron run and from the relativistic heavy ion collider RHIC. Theorists write of our ever better understanding of the Standard Model and of what might lie beyond. Risky as it is to highlight only a couple of exciting subjects, it is merely meantto whet the appetite for further reading.