Single-particle and many-body analyses of a quasiperiodic integrable system after a quench
arXiv:1304.2778 · doi:10.1103/PhysRevA.87.063637
Abstract
In general, isolated integrable quantum systems have been found to relax to an apparent equilibrium state in which the expectation values of few-body observables are described by the generalized Gibbs ensemble. However, recent work has shown that relaxation to such a generalized statistical ensemble can be precluded by localization in a quasiperiodic lattice system. Here we undertake complementary single-particle and many-body analyses of noninteracting spinless fermions and hard-core bosons within the Aubry-Andre model to gain insight into this phenomenon. Our investigations span both the localized and delocalized regimes of the quasiperiodic system, as well as the critical point separating the two. Considering first the case of spinless fermions, we study the dynamics of the momentum distribution function and characterize the effects of real-space and momentum-space localization on the relevant single-particle wave functions and correlation functions. We show that although some observables do not relax in the delocalized and localized regimes, the observables that do relax in these regimes do so in a manner consistent with a recently proposed Gaussian equilibration scenario, whereas relaxation at the critical point has a more exotic character. We also construct various statistical ensembles from the many-body eigenstates of the fermionic and bosonic Hamiltonians and study the effect of localization on their properties.
14 pages, 14 figures, as published
References in corpus (25)
- Many-Body Physics with Ultracold Gases
- Thermalization and its mechanism for generic isolated quantum systems
- Quantum Quench in the Transverse Field Ising Chain
- Breakdown of thermalization in finite one-dimensional systems
- The Luttinger model following a sudden interaction switch-on
- Many-Body Localization in a Quasiperiodic System
- Generalized Thermalization in an Integrable Lattice System
- Quantum Quench in the Transverse Field Ising chain I: Time evolution of order parameter correlators
- Quantum quench dynamics of the Luttinger model
- Quantum Quench in the Transverse Field Ising Chain II: Stationary State Properties
- Eigenstate thermalization within isolated spin-chain systems
- Relaxation of a one-dimensional Mott insulator after an interaction quench
- Quantum quench dynamics of the sine-Gordon model in some solvable limits
- Universal properties of hard-core bosons confined on one-dimensional lattices
- Relaxation dynamics in the gapped XXZ spin-1/2 chain
- Ground-state properties of hard-core bosons confined on one-dimensional optical lattices
- Quenches in a quasi-disordered integrable lattice system: Dynamics and statistical description of observables after relaxation
- Finite-temperature properties of hard-core bosons confined on one-dimensional optical lattices
- Relaxation and Thermalization after a Quantum Quench: Why Localization is Important
- Relaxation Dynamics of Disordered Spin Chains: Localization and the Existence of a Stationary State
- Gaussian Equilibration
- Scaling of noise correlations in one-dimensional-lattice-hard-core-boson systems
- Noise Correlation Scalings: Revisiting the Quantum Phase Transition in Incommensurate Lattices with Hard-Core Bosons
- Finite-temperature properties of one-dimensional hard-core bosons in a quasiperiodic optical lattice
- Testing the universality of the many-body metal-insulator transition by time evolution of a disordered one-dimensional ultracold fermionic gas
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- From Quantum Chaos and Eigenstate Thermalization to Statistical Mechanics and Thermodynamics
- Generalized Gibbs ensemble in integrable lattice models
- Quantum Chaos and Thermalization in Isolated Systems of Interacting Particles
- Finite-size scaling of eigenstate thermalization
- Off-diagonal matrix elements of local operators in many-body quantum systems
- Quantum quench in the sine-Gordon model
- Thouless and relaxation time scales in many-body quantum systems
- Generalized Hydrodynamics in the 1D Bose gas: theory and experiments
- Global characteristics of all eigenstates of local many-body Hamiltonians: participation ratio and entanglement entropy
- Eigenstate Entanglement Entropy in Random Quadratic Hamiltonians
- Quench Dynamics of Isolated Many-Body Quantum Systems
- Nonequilibrium dynamics of one-dimensional hard-core anyons following a quench: Complete relaxation of one-body observables
- Time Fluctuations in Isolated Quantum Systems of Interacting Particles
- Pre-relaxation in weakly interacting models
- Eigenstate thermalization hypothesis and integrals of motion
- Generalized Eigenstate Thermalization in 2d CFTs
- Nonexponential fidelity decay in isolated interacting quantum systems
- Quench dynamics and parity blocking in Majorana wires
- Dynamical signatures of quantum chaos and relaxation timescales in a spin-boson system
- Realistic many-body quantum systems vs full random matrices: static and dynamical properties
- Effects of the interplay between initial state and Hamiltonian on the thermalization of isolated quantum many-body systems
- Relaxation and Thermalization of Isolated Many-Body Quantum Systems
- Relaxation dynamics of the Lieb-Liniger gas following an interaction quench: A coordinate Bethe-ansatz analysis
- Integrals of motion for one-dimensional Anderson localized systems
- Eigenstate Thermalization in Long-Range Interacting Systems
- Edge and bulk localization of Floquet topological superconductors
- Zeros of Loschmidt echo in the presence of Anderson localization
- Quantum vs classical dynamics in a spin-boson system: manifestations of spectral correlations and scarring
- A coordinate Bethe ansatz approach to the calculation of equilibrium and nonequilibrium correlations of the one-dimensional Bose gas
- Quantum quenches in the thermodynamic limit. II. Initial ground states
- Generalized microcanonical and Gibbs ensembles in classical and quantum integrable dynamics
- Generalized thermalization in quantum-chaotic quadratic Hamiltonians
- Entanglement and thermodynamic entropy in a clean many-body-localized system
- Topological Gaps in Quasi-Periodic Spin Chains: A Numerical and K-Theoretic Analysis
- Noncommutative generalized Gibbs ensemble in isolated integrable quantum systems
- Experimental realization of the classical Dicke model
- Normal weak eigenstate thermalization
- Dynamics and level statistics of interacting fermions in the Lowest Landau Level
- Work extraction in an isolated quantum lattice system: Grand canonical and generalized Gibbs ensemble predictions
- Universal time-fluctuations in near-critical out-of-equilibrium quantum dynamics
- Signature of Generalized Gibbs Ensemble Deviation from Equilibrium: Negative Absorption Induced by a Local Quench
- Hierarchical relaxation dynamics in a tilted two-band Bose-Hubbard model
- Stability of quasicrystalline ultracold fermions to dipolar interactions
- Interplay of Anderson localization and quench dynamics
- Single-quasiparticle eigenstate thermalization
- Critical quantum dynamics of observables at eigenstate transitions
- Mapping Chern numbers in quasi-periodic interacting spin chains
- Fractal Quasicondensation in One Dimension
- Late-time universal distribution functions of observables in one-dimensional many-body quantum systems
- Statistical properties of the off-diagonal matrix elements of observables in eigenstates of integrable systems
- How to calculate quantum quench distributions with a weighted Wang-Landau Monte Carlo