Quasinormal modes of a strongly coupled nonconformal plasma and approach to criticality
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2018-04-17
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Abstract
We study fluctuations around equilibrium in a class of strongly interacting nonconformal plasmas using holographic techniques. In particular, we calculate the quasinormal mode spectrum of black hole backgrounds that approach Chamblin-Reall plasmas in the IR. In a specific limit, related to the exact linear-dilaton background in string theory, we observe that the plasma approaches criticality and we obtain the quasinormal spectrum analytically. We regulate the critical limit by gluing the IR geometry that corresponds to the nonconformal plasma to a part of AdS space-time in the UV. Near criticality, the spectrum can still be computed analytically and we find two sets of quasinormal modes, related to the IR and UV parts of the geometry. In the critical limit, the quasinormal modes accumulate to form a branch cut in the correlators of the energy-momentum tensor on the real axis of the complex frequency plane.
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Research Areas, Particles & Fields, Physics and Astronomy (miscellaneous)
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Betzios, P, Gürsoy, U, Järvinen, M & Policastro, G 2018, 'Quasinormal modes of a strongly coupled nonconformal plasma and approach to criticality', Physical Review D, vol. 97, no. 8, 081901. https://doi.org/10.1103/PhysRevD.97.081901