Holographic anomalous conductivities and the chiral magnetic effect

被引:0
作者
Antti Gynther
Karl Landsteiner
Francisco Pena-Benitez
Anton Rebhan
机构
[1] Technische Universität Wien,Institut für Theoretische Physik
[2] C-XVI Universidad Autónoma de Madrid,Instituto de Física Teórica CSIC
来源
Journal of High Energy Physics | / 2011卷
关键词
Gauge-gravity correspondence; Chiral Lagrangians; QCD;
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摘要
We calculate anomaly induced conductivities from a holographic gauge theory model using Kubo formulas, making a clear conceptual distinction between thermodynamic state variables such as chemical potentials and external background fields. This allows us to pinpoint ambiguities in previous holographic calculations of the chiral magnetic conductivity. We also calculate the corresponding anomalous current three-point functions in special kinematic regimes. We compare the holographic results to weak coupling calculations using both dimensional regularization and cutoff regularization. In order to reproduce the weak coupling results it is necessary to allow for singular holographic gauge field configurations when a chiral chemical potential is introduced for a chiral charge defined through a gauge invariant but non-conserved chiral density. We argue that this is appropriate for actually addressing charge separation due to the chiral magnetic effect.
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