Inhomogeneous Thermal Quenches
arXiv:1509.00245 · doi:10.1103/PhysRevD.96.026012
Abstract
We describe holographic thermal quenches that are inhomogeneous in space. The main characteristic of the quench is to take the system far from its equilibrium configuration. Except special extreme cases, the problem has no analytic solution. Using the numerical holography methods, we study different observables that measure thermalization such as the time evolution of the apparent horizon, two-point Wightman function and entanglement entropy (EE). Having an extra nontrivial spacial direction, allows us to study this peculiar generalization since we categorize the problem based on whether we do the measurements along this special direction or perpendicular to it. Exciting new features appear that are absent in the common computations in the literature; the appearance of negative EE valleys surrounding the positive EE hills and abrupt quenches that occupy the whole space at their universal limit are some of the results of this paper. Physical explanation is given and connections to the Cardy's idea of thermalization are discussed.
Accepted for publication in PRD
References in corpus (19)
- Thermalization and its mechanism for generic isolated quantum systems
- Quantum Quench in the Transverse Field Ising Chain
- Quench dynamics and non equilibrium phase diagram of the Bose-Hubbard model
- Exact relaxation in a class of non-equilibrium quantum lattice systems
- Horizon formation and far-from-equilibrium isotropization in supersymmetric Yang-Mills plasma
- Holography and colliding gravitational shock waves in asymptotically AdS_5 spacetime
- Strongly correlated fermions after a quantum quench
- Holographic Evolution of Entanglement Entropy
- Entanglement growth during thermalization in holographic systems
- A numerical relativity approach to the initial value problem in asymptotically Anti-de Sitter spacetime for plasma thermalization - an ADM formulation
- Quantum Quench from a Thermal Initial State
- Quenches in quantum many-body systems: One-dimensional Bose-Hubbard model reexamined
- Universal scaling in fast quantum quenches in conformal field theories
- Thermodynamics of the N=2^* strongly coupled plasma
- Universality in fast quantum quenches
- Time evolution of 1D gapless models from a domain-wall initial state: SLE continued?
- Nonlocal probes of thermalization in holographic quenches with spectral methods
- Weak Field Collapse in AdS: Introducing a Charge Density
- Modification of late time phase structure by quantum quenches