Quantum Thermalization via Travelling Waves
arXiv:2405.19884 · doi:10.1103/PhysRevLett.134.116503
Abstract
Isolated quantum many-body systems which thermalize under their own dynamics are expected to act as their own thermal baths, thereby bringing their local subsystems to thermal equilibrium. Here we show that the infinite-dimensional limit of a quantum lattice model, as described by Dynamical Mean-Field theory (DMFT), provides a natural framework to understand this self-consistent thermalization process. Using the Fermi-Hubbard model as working example, we demonstrate that the emergence of a self-consistent bath thermalising the system is characterized by a sharp thermalization front, moving balistically and separating the initial condition from the long-time thermal fixed point. We characterize the full DMFT dynamics through an effective temperature for which we derive a travelling-wave equation of the Fisher-Kolmogorov-Petrovsky-Piskunov (FKPP) type. This equation allows to predict the asymptotic shape of the front and its velocity, which match perfectly the full DMFT numerics. Our results provide a new angle to understand the onset of quantum thermalisation in closed isolated systems.
21 pages, 6 figures
References in corpus (38)
- Thermalization and its mechanism for generic isolated quantum systems
- Nonequilibrium dynamics of closed interacting quantum systems
- Many body localization and thermalization in quantum statistical mechanics
- From Quantum Chaos and Eigenstate Thermalization to Statistical Mechanics and Thermodynamics
- Quantum thermalization through entanglement in an isolated many-body system
- Equilibration, thermalisation, and the emergence of statistical mechanics in closed quantum systems
- Nonequilibrium dynamical mean-field theory and its applications
- Dynamical phase transition in correlated fermionic lattice systems
- Testing whether all eigenstates obey the Eigenstate Thermalization Hypothesis
- Effect of Rare Fluctuations on the Thermalization of Isolated Quantum Systems
- Microscopic model of quantum butterfly effect: out-of-time-order correlators and traveling combustion waves
- Nonequilibrium dynamical mean-field calculations based on the non-crossing approximation and its generalizations
- Disorder-Driven Non-Fermi Liquid Behavior of Correlated Electrons
- Nonequilibrium quantum criticality in open electronic systems
- The Kondo effect in quantum dots at high voltage: Universality and scaling
- The Eigenstate Thermalization Hypothesis and Out of Time Order Correlators
- Interaction quench in the Hubbard model: Relaxation of the spectral function and the optical conductivity
- Typical fast thermalization processes in closed many-body systems
- Scaling and Decoherence in the Out-of-Equilibrium Kondo Model
- Locality, Quantum Fluctuations, and Scrambling
- NESSi: The Non-Equilibrium Systems Simulation package
- Finite-Size Scaling Analysis of the Eigenstate Thermalization Hypothesis in a One-Dimensional Interacting Bose gas
- Eigenstate Thermalization Hypothesis and Free Probability
- Signatures of bath-induced quantum avalanches in a many-body--localized system
- Transient Orthogonality Catastrophe in a Time Dependent Nonequilibrium Environment
- Resonant thermalization of periodically driven strongly correlated electrons
- Low rank compression in the numerical solution of the nonequilibrium Dyson equation
- The Lyapunov Spectrum of Quantum Thermalisation
- Experimental observation of thermalization with noncommuting charges
- Poor Man's Understanding of Kinks Originating from Strong Electronic Correlations
- Nonequilibrium dynamical mean-field theory for bosonic lattice models
- Many-Body Quantum Chaos and Space-time Translational Invariance
- Nanoscale Dynamical Mean-Field Theory for Molecules and Mesoscopic Devices in the Strong-Correlation Regime
- A quantum Boltzmann equation for strongly correlated electrons
- An exactly solvable travelling wave equation in the Fisher-KPP class
- Inhomogeneous disordering at a photo-induced charge density wave transition
- Traveling discontinuity at the quantum butterfly front
- Kinetics of information scrambling in correlated electrons: disorder-driven transition from shock-wave to FKPP dynamics