From Gravity to Thermal Gauge Theories: The AdS/CFT Correspondence [electronic resource] : The AdS/CFT Correspondence / edited by Eleftherios Papantonopoulos.

Contributor(s): Papantonopoulos, Eleftherios [editor.] | SpringerLink (Online service)Material type: TextTextSeries: Lecture Notes in Physics ; 828Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 2011Description: XVIII, 425p. online resourceContent type: text Media type: computer Carrier type: online resourceISBN: 9783642048647Subject(s): Physics | Nuclear physics | Quantum theory | Physics | Quantum Field Theories, String Theory | Elementary Particles, Quantum Field Theory | Strongly Correlated Systems, Superconductivity | Nuclear Physics, Heavy Ions, Hadrons | Classical and Quantum Gravitation, Relativity TheoryAdditional physical formats: Printed edition:: No titleDDC classification: 530.14 LOC classification: QC174.45-174.52Online resources: Click here to access online
Contents:
Introduction to the AdS/CFT Correspondence -- Perturbations of anti-de Sitter Black Holes -- Introduction to the AdS/CFT Correspondence -- Improved Holographic QCD -- The Dynamics of Quark Gluon Plasma and AdS/CFT -- Fluid Dynamics from Gravity -- The Gauge-gravity Duality and Heavy Ion-Collisions -- AdS/CFT on the Brane -- Condensed Matter and AdS/CFT -- Introduction to Holographic Superconductors -- Flavor Superconductivity and Superfluidity -- Holographic Torsion and the Prelude to Kalb-Ramond Superconductivity -- Index.
In: Springer eBooksSummary: The AdS/CFT correspondence is a powerful tool in studying strongly coupled phenomena in gauge field theories, using results from a weakly coupled gravity background studied in the realm of string theory. AdS/CFT was first successfully applied to the study of phenomena such as the quark-gluon plasma produced in heavy ions collisions. Soon it was realized that its applicability can be extended, in a more phenomenological approach, to condensed matter systems and to systems described by fluid dynamics.  The set of tutorial reviews in this volume is intended as an introduction to and survey of the principle of the AdS/CFT correspondence in its field/string theoretic formulation, its applicability to holographic QCD and to heavy ions collisions, and to give a first account of processes in fluid dynamics and condensed matter physics, which can be studied with the use of this principle.  Written by leading researchers in the field and cast into the form of a high-level but approachable multi-author textbook, this volume will be of benefit to all postgraduate students, and newcomers from neighboring disciplines wishing to find a comprehensive guide for their future research.
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Introduction to the AdS/CFT Correspondence -- Perturbations of anti-de Sitter Black Holes -- Introduction to the AdS/CFT Correspondence -- Improved Holographic QCD -- The Dynamics of Quark Gluon Plasma and AdS/CFT -- Fluid Dynamics from Gravity -- The Gauge-gravity Duality and Heavy Ion-Collisions -- AdS/CFT on the Brane -- Condensed Matter and AdS/CFT -- Introduction to Holographic Superconductors -- Flavor Superconductivity and Superfluidity -- Holographic Torsion and the Prelude to Kalb-Ramond Superconductivity -- Index.

The AdS/CFT correspondence is a powerful tool in studying strongly coupled phenomena in gauge field theories, using results from a weakly coupled gravity background studied in the realm of string theory. AdS/CFT was first successfully applied to the study of phenomena such as the quark-gluon plasma produced in heavy ions collisions. Soon it was realized that its applicability can be extended, in a more phenomenological approach, to condensed matter systems and to systems described by fluid dynamics.  The set of tutorial reviews in this volume is intended as an introduction to and survey of the principle of the AdS/CFT correspondence in its field/string theoretic formulation, its applicability to holographic QCD and to heavy ions collisions, and to give a first account of processes in fluid dynamics and condensed matter physics, which can be studied with the use of this principle.  Written by leading researchers in the field and cast into the form of a high-level but approachable multi-author textbook, this volume will be of benefit to all postgraduate students, and newcomers from neighboring disciplines wishing to find a comprehensive guide for their future research.

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