Black Branes as Piezoelectrics
arXiv:1209.2127 · doi:10.1103/PhysRevLett.109.241101
Abstract
We find a realization of linear electroelasticity theory in gravitational physics by uncovering a new response coefficient of charged black branes, exhibiting their piezoelectric behavior. Taking charged dilatonic black strings as an example and using the blackfold approach we measure their elastic and piezolectric moduli. We also use our results to draw predictions about the equilibrium condition of charged dilatonic black rings in dimensions higher than six.
v2: 9 pages; important sign corrections in section 3 and other minor corrections; published in PRL
References in corpus (1)
Cited by in corpus (25)
- How Fluids Bend: the Elastic Expansion for Higher-Dimensional Black Holes
- One-form superfluids and magnetohydrodynamics
- New Transport Properties of Anisotropic Holographic Superfluids
- Forced Fluid Dynamics from Blackfolds in General Supergravity Backgrounds
- Gravitational double layers
- Constraints on the effective fluid theory of stationary branes
- Extremal Black Hole Horizons
- Electroelasticity of Charged Black Branes
- Dissipative hydrodynamics with higher-form symmetry
- Black Holes and Biophysical (Mem)-branes
- (Non)-Dissipative Hydrodynamics on Embedded Surfaces
- On the surface of superfluids
- Relativistic Elasticity of Stationary Fluid Branes
- Null-Wave Giant Gravitons from Thermal Spinning Brane Probes
- Thermal transitions of metastable M-branes
- Viscous Asymptotically Flat Reissner-Nordström Black Branes
- Emergent Dark Matter in Late Time Universe on Holographic Screen
- Instabilities of Thin Black Rings: Closing the Gap
- Entanglement-induced deviation from the geodesic motion in quantum gravity
- Kaluza-Klein reduction of relativistic fluids and their gravity duals
- New asymptotically (Anti)-de Sitter black holes in (super)gravity
- Anomalous curvature evolution and geometric regularization of energy focusing in the snapping dynamics of a flexible body
- On the possibility of classical vacuum polarization and magnetization
- Application of top-down holographic thermal QCD at finite coupling
- An effective theory for higher-dimensional black holes and applications to metastable antibranes