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Publisher:
Cambridge University Press
Online publication date:
July 2023
Print publication year:
2023
Online ISBN:
9781009403504
Creative Commons:
Creative Common License - CC Creative Common License - BY Creative Common License - NC Creative Common License - ND
This content is Open Access and distributed under the terms of the Creative Commons Attribution licence CC-BY-NC-ND 4.0 https://creativecommons.org/creativelicenses

Book description

Heavy ion collision experiments recreating the quark-gluon plasma that filled the nascent universe have established that it is a nearly perfect liquid that flows with such minimal dissipation that it cannot be seen as made of particles. String theory provides a powerful toolbox for studying matter with such properties. This book provides a comprehensive introduction to gauge/string duality and its applications to the study of the thermal and transport properties of quark-gluon plasma, the dynamics of how it forms, how it flows, and its response to probes including jets and quarkonium mesons. Calculations are discussed in the context of data from RHIC and LHC and results from finite temperature lattice QCD. This is an ideal reference for students and researchers in string theory, quantum field theory, quantum many-body physics, heavy ion physics and lattice QCD. This title from 2014 has been reissued as an Open Access publication on Cambridge Core.

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Contents

Full book PDF
  • Frontmatter
    pp i-iv
  • Contents
    pp v-vi
  • 1 - Opening remarks
    pp 1-3
  • 2 - A heavy ion phenomenology primer
    pp 4-64
  • 3 - Results from lattice QCD at nonzero temperature
    pp 65-91
  • 4 - Introducing the gauge/string duality
    pp 92-110
  • 5 - A duality toolbox
    pp 111-149
  • 6 - Bulk properties of strongly coupled plasma
    pp 150-193
  • 7 - From hydrodynamics to far-from-equilibrium dynamics
    pp 194-260
  • 8 - Probing strongly coupled plasma
    pp 261-346
  • 9 - Quarkonium mesons in strongly coupled plasma
    pp 347-397
  • 10 - Concluding remarks and outlook
    pp 398-402
  • Appendix A - Green–Kubo formula for transport coefficients
    pp 403-404
  • Appendix B - Hawking temperature of a general black brane metric
    pp 405-405
  • Appendix C - Holographic renormalization, one-point functions, and a two-point function
    pp 406-409
  • Appendix D - Computation of the holographic stress tensor
    pp 410-413
  • Bibliography
    pp 414-457
  • Index
    pp 458-460

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