Quasi-normal modes of dyonic black holes and magneto-hydrodynamics

被引:0
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作者
Hyun-Sik Jeong
Keun-Young Kim
Ya-Wen Sun
机构
[1] University of Chinese Academy of Sciences,School of physics & CAS Center for Excellence in Topological Quantum Computation
[2] University of Chinese Academy of Sciences,Kavli Institute for Theoretical Sciences
[3] Gwangju Institute of Science and Technology,Department of Physics and Photon Science
[4] Gwangju Institute of Science and Technology,Research Center for Photon Science Technology
来源
Journal of High Energy Physics | / 2022卷
关键词
Gauge-Gravity Correspondence; Holography and Condensed Matter Physics (AdS/CMT);
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摘要
We revisit the magneto-hydrodynamics in (2+1) dimensions and confirm that it is consistent with the quasi-normal modes of the (3+1) dimensional dyonic black holes in the most general set-up with finite density, magnetic field and wave vector. We investigate all possible modes (sound, shear, diffusion, cyclotron etc.) and their interplay. For the magneto-hydrodynamics we perform a complete and detailed analysis correcting some prefactors in the literature, which is important for the comparison with quasi-normal modes. For the quasi-normal mode computations in holography we identify the independent fluctuation variables of the dyonic black holes, which is nontrivial at finite density and magnetic field. As an application of the quasi-normal modes of the dyonic black holes we investigate a transport property, the diffusion constant. We find that the diffusion constant at finite density and magnetic field saturates the lower bound at low temperature. We show that this bound can be understood from the pole-skipping point.
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