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Hyperscaling-Violating Lifshitz hydrodynamics from black-holes: Part II

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arxiv 1611.04773 v2 pith:VV2HN2OX submitted 2016-11-15 hep-th cond-mat.quant-gascond-mat.stat-mechcond-mat.str-el

classification hep-thcond-mat.quant-gascond-mat.stat-mechcond-mat.str-el
keywords hydrodynamicslifshitzviscositybulkhyperscalingnon-relativisticscalingansatz
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The derivation of Lifshitz-invariant hydrodynamics from holography, presented in [arXiv:1508.02494] is generalized to arbitrary hyperscaling violating Lifshitz scaling theories with an unbroken U(1) symmetry. The hydrodynamics emerging is non-relativistic with scalar "forcing". By a redefinition of the pressure it becomes standard non-relativistic hydrodynamics in the presence of specific chemical potential for the mass current. The hydrodynamics is compatible with the scaling theory of Lifshitz invariance with hyperscaling violation. The bulk viscosity vanishes while the shear viscosity to entropy ratio is the same as in the relativistic case. We also consider the dimensional reduction ansatz for the hydrodynamics and clarify the difference with previous results suggesting a non-vanishing bulk viscosity.

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  1. Cardy Entropy of Charged and Rotating Asymptotically AdS and Lifshitz Solutions with a Generalized Chern-Simons term

    hep-th 2025-06 conditional novelty 6.0 of 10

    A generalized Cardy-like formula using the soliton mass as vacuum energy reproduces the entropy of charged rotating AdS and Lifshitz black holes in three dimensions.

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