4.4 Article

Topological or rotational non-Abelian gauge fields from Einstein-Skyrme holography

期刊

JOURNAL OF HIGH ENERGY PHYSICS
卷 -, 期 3, 页码 -

出版社

SPRINGER
DOI: 10.1007/JHEP03(2021)229

关键词

Holography and quark-gluon plasmas; AdS-CFT Correspondence; Holography and condensed matter physics (AdS; CMT); Topological States of Matter

资金

  1. DOE [DE-SC-0012447]

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This study reports analytically known states at non-zero temperature that can reveal common topological and thermodynamic properties of various systems. Using holographically dual gravity theory, these states are shown to be analytic solutions dynamically coupled to Einstein gravity. The solutions are fully backreacted asymptotically Anti-de Sitter (AdS) black branes or holes, and have significant effects on deconfinement phase transition in the holographically dual field theory. Additionally, rotating black branes are provided in the solutions, inducing states with propagating charge density waves in the dual field theory.
We report analytically known states at non-zero temperature which may serve as a powerful tool to reveal common topological and thermodynamic properties of systems ranging from the QCD phase diagram to topological phase transitions in condensed matter materials. In the holographically dual gravity theory, these are analytic solutions to a five-dimensional non-linear-sigma (Skyrme) model dynamically coupled to Einstein gravity. This theory is shown to be holographically dual to N = 4 Super-Yang-Mills theory coupled to an SU(2)-current. All solutions are fully backreacted asymptotically Anti-de Sitter (AdS) black branes or holes. One family of global AdS black hole solutions contains non-Abelian gauge field configurations with positive integer Chern numbers and finite energy density. Larger Chern numbers increase the Hawking-Page transition temperature. In the holographically dual field theory this indicates a significant effect on the deconfinement phase transition. Black holes with one Hawking temperature can have distinct Chern numbers, potentially enabling topological transitions. A second family of analytic solutions, rotating black branes, is also provided. These rotating solutions induce states with propagating charge density waves in the dual field theory. We compute the Hawking temperature, entropy density, angular velocity and free energy for these black holes/branes. These correspond to thermodynamic data in the dual field theory. For these states the energy-momentum tensor, (non-)conserved current, and topological charge are interpreted.

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