The fluid manifesto: emergent symmetries, hydrodynamics, and black holes

A bstract We focus on the question of how relativistic fluid dynamics should be thought of as a Wilsonian effective field theory emerging from Schwinger-Keldysh path integrals. Taking the basic principles of Schwinger-Keldysh formalism seriously, we are led to a series of remarkable statements and c...

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Veröffentlicht in:The journal of high energy physics Jg. 2016; H. 1; S. 1 - 31
Hauptverfasser: Haehl, Felix M., Loganayagam, R., Rangamani, Mukund
Format: Journal Article
Sprache:Englisch
Veröffentlicht: Berlin/Heidelberg Springer Berlin Heidelberg 29.01.2016
Springer Berlin
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ISSN:1029-8479, 1029-8479
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Abstract A bstract We focus on the question of how relativistic fluid dynamics should be thought of as a Wilsonian effective field theory emerging from Schwinger-Keldysh path integrals. Taking the basic principles of Schwinger-Keldysh formalism seriously, we are led to a series of remarkable statements and conjectures, which we phrase in terms of a broad programme relating relativistic fluid dynamics and topological sigma models. Apart from the intrinsic interest for these ideas from the non-equilibrium field theory viewpoint, we also emphasize its relevance to various fundamental questions in black hole physics.
AbstractList We focus on the question of how relativistic fluid dynamics should be thought of as a Wilsonian effective field theory emerging from Schwinger-Keldysh path integrals. Taking the basic principles of Schwinger-Keldysh formalism seriously, we are led to a series of remarkable statements and conjectures, which we phrase in terms of a broad programme relating relativistic fluid dynamics and topological sigma models. Apart from the intrinsic interest for these ideas from the non-equilibrium field theory viewpoint, we also emphasize its relevance to various fundamental questions in black hole physics.
A bstract We focus on the question of how relativistic fluid dynamics should be thought of as a Wilsonian effective field theory emerging from Schwinger-Keldysh path integrals. Taking the basic principles of Schwinger-Keldysh formalism seriously, we are led to a series of remarkable statements and conjectures, which we phrase in terms of a broad programme relating relativistic fluid dynamics and topological sigma models. Apart from the intrinsic interest for these ideas from the non-equilibrium field theory viewpoint, we also emphasize its relevance to various fundamental questions in black hole physics.
ArticleNumber 184
Author Rangamani, Mukund
Haehl, Felix M.
Loganayagam, R.
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  givenname: R.
  surname: Loganayagam
  fullname: Loganayagam, R.
  organization: Institute for Advanced Study
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  givenname: Mukund
  surname: Rangamani
  fullname: Rangamani, Mukund
  organization: Center for Quantum Mathematics and Physics (QMAP), Department of Physics, University of California
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Issue 1
Keywords Black Holes in String Theory
AdS-CFT Correspondence
Topological Field Theories
Effective field theories
Language English
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SSID ssj0015190
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Snippet A bstract We focus on the question of how relativistic fluid dynamics should be thought of as a Wilsonian effective field theory emerging from...
We focus on the question of how relativistic fluid dynamics should be thought of as a Wilsonian effective field theory emerging from Schwinger-Keldysh path...
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SubjectTerms AdS-CFT Correspondence
BASIC (programming language)
Black Holes in String Theory
Classical and Quantum Gravitation
Computational fluid dynamics
Effective field theories
Elementary Particles
Field theory
Fluid flow
Fluids
Formalism
Hydrodynamics
Physics
Physics and Astronomy
PHYSICS OF ELEMENTARY PARTICLES AND FIELDS
Quantum Field Theories
Quantum Field Theory
Quantum Physics
Regular Article - Theoretical Physics
Relativity Theory
String Theory
Symmetry
Topological Field Theories
Title The fluid manifesto: emergent symmetries, hydrodynamics, and black holes
URI https://link.springer.com/article/10.1007/JHEP01(2016)184
https://www.proquest.com/docview/1808122015
https://www.osti.gov/servlets/purl/1597662
Volume 2016
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