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Constraints on the effective fluid theory of stationary branes

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arxiv 1406.7813 v2 pith:PXTY5ASM submitted 2014-06-30 hep-th gr-qc

classification hep-thgr-qc
keywords braneeffectiveconstraintsfluidlagrangianstationarytheorybackground
verification ladder T0 review T1 audit T2 compute T3 formal

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We develop further the effective fluid theory of stationary branes. This formalism applies to stationary blackfolds as well as to other equilibrium brane systems at finite temperature. The effective theory is described by a Lagrangian containing the information about the elastic dynamics of the brane embedding as well as the hydrodynamics of the effective fluid living on the brane. The Lagrangian is corrected order-by-order in a derivative expansion, where we take into account the dipole moment of the brane which encompasses finite-thickness corrections, including transverse spin. We describe how to extract the thermodynamics from the Lagrangian and we obtain constraints on the higher-derivative terms with one and two derivatives. These constraints follow by comparing the brane thermodynamics with the conserved currents associated with background Killing vector fields. In particular, we fix uniquely the one- and two-derivative terms describing the coupling of the transverse spin to the background space-time. Finally, we apply our formalism to two blackfold examples, the black tori and charged black rings and compare the latter to a numerically generated solution.

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  1. Chiral anomaly from (anomalous) spin hydrodynamics

    hep-th 2025-05 conditional novelty 7.0 of 10

    Spinning D3-brane hydrodynamics in 10d maps to anomalous chiral hydrodynamics in 4d, identifying the R-current anomaly as a 10d gravitational anomaly.

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