Anisotropic plasma at finite U(1) chemical potential

A bstract We present a type IIB supergravity solution dual to a spatially anisotropic N =4 super Yang-Mills plasma at finite U(1) chemical potential and finite temperature. The effective five-dimensional gravitational theory is a consistent Einstein-Maxwell-dilaton-Axion truncation of the gauged sup...

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Published in:The journal of high energy physics Vol. 2014; no. 7; p. 1
Main Authors: Cheng, Long, Ge, Xian-Hui, Sin, Sang-Jin
Format: Journal Article
Language:English
Published: Berlin/Heidelberg Springer Berlin Heidelberg 01-07-2014
Springer Nature B.V
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Abstract A bstract We present a type IIB supergravity solution dual to a spatially anisotropic N =4 super Yang-Mills plasma at finite U(1) chemical potential and finite temperature. The effective five-dimensional gravitational theory is a consistent Einstein-Maxwell-dilaton-Axion truncation of the gauged supergravity. We obtain the solutions both numerically and analytically. We study the phase structure and thermodynamic instabilities of the solution, and find new instabilities independent of the renormalization scheme.
AbstractList (ProQuest: ... denotes formulae and/or non-USASCII text omitted; see image) Abstract We present a type IIB supergravity solution dual to a spatially anisotropic ... =4 super Yang-Mills plasma at finite U(1) chemical potential and finite temperature. The effective five-dimensional gravitational theory is a consistent Einstein-Maxwell-dilaton-Axion truncation of the gauged supergravity. We obtain the solutions both numerically and analytically. We study the phase structure and thermodynamic instabilities of the solution, and find new instabilities independent of the renormalization scheme.
A bstract We present a type IIB supergravity solution dual to a spatially anisotropic N =4 super Yang-Mills plasma at finite U(1) chemical potential and finite temperature. The effective five-dimensional gravitational theory is a consistent Einstein-Maxwell-dilaton-Axion truncation of the gauged supergravity. We obtain the solutions both numerically and analytically. We study the phase structure and thermodynamic instabilities of the solution, and find new instabilities independent of the renormalization scheme.
ArticleNumber 83
Author Cheng, Long
Ge, Xian-Hui
Sin, Sang-Jin
Author_xml – sequence: 1
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  surname: Cheng
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  organization: Department of Physics, Shanghai University
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  givenname: Xian-Hui
  surname: Ge
  fullname: Ge, Xian-Hui
  email: gexh@shu.edu.cn
  organization: Department of Physics, Shanghai University
– sequence: 3
  givenname: Sang-Jin
  surname: Sin
  fullname: Sin, Sang-Jin
  organization: Department of Physics, Hanyang University
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Snippet A bstract We present a type IIB supergravity solution dual to a spatially anisotropic N =4 super Yang-Mills plasma at finite U(1) chemical potential and finite...
(ProQuest: ... denotes formulae and/or non-USASCII text omitted; see image) Abstract We present a type IIB supergravity solution dual to a spatially...
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SubjectTerms Classical and Quantum Gravitation
Elementary Particles
High energy physics
Physics
Physics and Astronomy
Quantum Field Theories
Quantum Field Theory
Quantum Physics
Relativity Theory
String Theory
Title Anisotropic plasma at finite U(1) chemical potential
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