Non-equilibrium Phase Transition from AdS/CFT
arXiv:1305.3713 · doi:10.1016/j.nuclphysb.2013.09.008
Abstract
Using AdS/CFT correspondence we study non-equilibrium phase transition in the presence of a constant external magnetic field. The transition occurs when the sign of differential conductivity reverses. Utilizing numerical method we show that the type of transition depends on the value of magnetic field as well as the temperature of gauge theory. Moreover we show that this transition does not depend on the supersymmetry and the subspace on which the fundamental matter fields live.
17 pages, 8 figures, Published version in NPB
References in corpus (3)
Cited by in corpus (10)
- Critical Exponents of Nonequilibrium Phase Transitions in AdS/CFT Correspondence
- Current-driven tricritical point in large- gauge theory
- Mechanism for Negative Differential Conductivity in Holographic Conductors
- Electric Field Quench, Equilibration and Universal Behavior
- Thermal Fluctuation and Meson Melting: Holographic Approach
- Chiral Magnetic Effect in the Anisotropic Quark-Gluon Plasma
- Non-Equilibrium Critical Phenomena From Probe Brane Holography in Schrödinger Spacetime
- Ground State Instability in Non-relativistic QFT and Euler-Heisenberg Lagrangian via Holography
- Patchwork Conditions for Holographic Nonlinear Responses: A Computational Method for Electric Conductivity and Friction Coefficient
- A Consistent Holographic Analysis of Anomaly-induced Charge Transport in the D3/D7 Model