Patchwork Conditions for Holographic Nonlinear Responses: A Computational Method for Electric Conductivity and Friction Coefficient
arXiv:2303.02633 · doi:10.1093/ptep/ptae118
Abstract
We propose a new method to compute nonlinear transport coefficients in holography, such as nonlinear DC conductivity and nonlinear friction coefficient. The conventional method can be applied only to the models whose action in the gravity dual has the ``square-root structure,'' i.e., the Dirac-Born-Infeld action of the probe D-branes or the Nambu-Goto action of the probe strings. Our method is applicable to a wider range of holographic models whose action does not have such a square-root structure. We propose a condition to obtain regular physical configurations in the gravity dual in the form of two simultaneous equations, which we call the patchwork condition. Our method also enables us to estimate the effective temperature of the nonequilibrium steady states in a wider range of holographic models. We show that a general model exhibits different effective temperatures for different fluctuation modes.
v1: 36 pages, 13 figures, v2: 37 pages, references added, description of conventional methods modified, v3: 46 pages, title changed, match published version
References in corpus (20)
- Building an AdS/CFT superconductor
- Minkowski-space correlators in AdS/CFT correspondence: recipe and applications
- Energy loss of a heavy quark moving through N=4 supersymmetric Yang-Mills plasma
- Drag force in AdS/CFT
- Metallic AdS/CFT
- Colorful horizons with charge in anti-de Sitter space
- Momentum fluctuations of heavy quarks in the gauge-string duality
- Superconductivity from gauge/gravity duality with flavor
- Energy Loss of Heavy Quarks from Asymptotically AdS Geometries
- Quarks in an External Electric Field in Finite Temperature Large N Gauge Theory
- Flavor Superconductivity from Gauge/Gravity Duality
- On Drag Forces and Jet Quenching in Strongly Coupled Plasmas
- Causal Structures in Gauss-Bonnet gravity
- Langevin diffusion of heavy quarks in non-conformal holographic backgrounds
- Effects of renormalization and non-Hermiticity on nonlinear responses in strongly-correlated electron systems
- Electric Field Quench in AdS/CFT
- Energy extraction from Kerr black holes by rigidly rotating strings
- Dynamical stability and filamentary instability in holographic conductors
- Electric-field driven nonequilibrium phase transitions in AdS/CFT
- Drude weights in one-dimensional systems with a single defect