Dissipative effects in finite density holographic superfluids
arXiv:2209.06893 · doi:10.1007/JHEP11(2022)053
Abstract
We derive the leading dissipative corrections of holographic superfluids at finite temperature and chemical potential by employing our recently developed techniques to study dissipative effects in the hydrodynamic limit of holographic theories. As part of our results, we express the incoherent conductivity, the shear and the three bulk viscosities in terms of thermodynamics and the black hole horizon data of the dual bulk geometries. We use our results to show that all three bulk viscosities exhibit singular behaviour close to the critical point.
34 pages, fixed typos, added references
References in corpus (11)
- Building an AdS/CFT superconductor
- Nonlinear Fluid Dynamics from Gravity
- Viscosity, Black Holes, and Quantum Field Theory
- Universality of the hydrodynamic limit in AdS/CFT and the membrane paradigm
- Thermoelectric DC conductivities from black hole horizons
- An Analytic Holographic Superconductor
- Hydrodynamics of Holographic Superconductors
- Quantum critical lines in holographic phases with (un)broken symmetry
- A Novel Formula for Bulk Viscosity from the Null Horizon Focusing Equation
- Dissipation in Holographic Superfluids
- Holographic Dissipation from the Symplectic Current