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      (Non)-Renormalization of the Chiral Vortical Effect Coefficient

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          Abstract

          We show using diagramtic arguments that in some (but not all) cases, the temperature dependent part of the chiral vortical effect coefficient is independent of the coupling constant. An interpretation of this result in terms of quantization in the effective 3 dimensional Chern-Simons theory is also given. In the language of 3D dimensionally reduced theory, the value of the chiral vortical coefficient is related to the formula \(\sum_{n=1}^\infty n=-1/12\). We also show that in the presence of dynamical gauge fields, the CVE coefficient is not protected from renormalization, even in the large \(N\) limit.

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          Author and article information

          Journal
          2012-07-24
          2012-10-03
          Article
          10.1007/JHEP02(2015)169
          1207.5806
          c0700e02-37d8-49bd-9974-65348c0878ad

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

          History
          Custom metadata
          INT-PUB-12-034
          JHEP 02 (2015) 169
          11 pages, 3 figures. Version 2 corrects an error and calculates leading radiative correction
          hep-th hep-ph nucl-th

          High energy & Particle physics,Nuclear physics
          High energy & Particle physics, Nuclear physics

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