Effects of the interplay between initial state and Hamiltonian on the thermalization of isolated quantum many-body systems
arXiv:1305.6937 · doi:10.1103/PhysRevE.88.042121
Abstract
We explore the role of the initial state on the onset of thermalization in isolated quantum many-body systems after a quench. The initial state is an eigenstate of an initial Hamiltonian and it evolves according to a different final Hamiltonian . If the initial state has a chaotic structure with respect to , i.e., if it fills the energy shell ergodically, thermalization is certain to occur. This happens when is a full random matrix, because its states projected onto are fully delocalized. The results for the observables then agree with those obtained with thermal states at infinite temperature. However, finite real systems with few-body interactions, as the ones considered here, are deprived of fully extended eigenstates, even when described by a nonintegrable Hamiltonian. We examine how the initial state delocalizes as it gets closer to the middle of the spectrum of , causing the observables to approach thermal averages, be the models integrable or chaotic. Our numerical studies are based on initial states with energies that cover the entire lower half of the spectrum of one-dimensional Heisenberg spin-1/2 systems.
11 pages, 11 figures, version as published
References in corpus (18)
- 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
- Foundation of Statistical Mechanics under experimentally realistic conditions
- Strong and weak thermalization of infinite non-integrable quantum systems
- Generalized Thermalization in an Integrable Lattice System
- Absence of Thermalization in Nonintegrable Systems
- Quantum Quench in the Transverse Field Ising Chain II: Stationary State Properties
- Quantum Quenches, Thermalization and Many-Body Localization
- Stationary behaviour of observables after a quantum quench in the spin-1/2 Heisenberg XXZ chain
- Quenches in a quasi-disordered integrable lattice system: Dynamics and statistical description of observables after relaxation
- Time Fluctuations in Isolated Quantum Systems of Interacting Particles
- Initial state dependence of the quench dynamics in integrable quantum systems. II. Thermal states
- Quantum parallelism as a tool for ensemble spin dynamics calculations
- Gaussian Equilibration
- Initial state dependence of the quench dynamics in integrable quantum systems. III. Chaotic states
- Decoherence as attenuation of mesoscopic echoes in a spin-chain channel
Cited by in corpus (45)
- From Quantum Chaos and Eigenstate Thermalization to Statistical Mechanics and Thermodynamics
- Quantum Chaos and Thermalization in Isolated Systems of Interacting Particles
- Off-diagonal matrix elements of local operators in many-body quantum systems
- Relaxation and thermalization in the one-dimensional Bose-Hubbard model: A case study for the interaction quantum quench from the atomic limit
- On Conservation Laws, Relaxation and Pre-relaxation after a Quantum Quench
- Quantum Quenches in the Thermodynamic Limit
- Extended nonergodic states in disordered many-body quantum systems
- Global characteristics of all eigenstates of local many-body Hamiltonians: participation ratio and entanglement entropy
- Thermalization and light cones in a model with weak integrability breaking
- Local quenches with global effects in interacting quantum systems
- Quench Dynamics of Isolated Many-Body Quantum Systems
- General Features of the Relaxation Dynamics of Interacting Quantum Systems
- Dynamical Manifestations of Quantum Chaos: Correlation Hole and Bulge
- Stationary entanglement entropies following an interaction quench in 1D Bose gas
- Inevitable Power-law Behavior of Isolated Many-Body Quantum Systems and How It Anticipates Thermalization
- Power-law decay exponents: a dynamical criterion for predicting thermalization
- Nonexponential fidelity decay in isolated interacting quantum systems
- Realistic many-body quantum systems vs full random matrices: static and dynamical properties
- Stationary entropies after a quench from excited states in the Ising chain
- Relaxation and Thermalization of Isolated Many-Body Quantum Systems
- Overlap distributions for quantum quenches in the anisotropic Heisenberg chain
- Effects of excited state quantum phase transitions on system dynamics
- Interaction quenches in the two-dimensional fermionic Hubbard model
- Relaxation, chaos, and thermalization in a three-mode model of a BEC
- Chaos and Thermalization in the Spin-Boson Dicke Model
- Quenching the magnetic flux in 1d fermionic ring: Loschmidt echo and edge singularity
- How accurately can the microcanonical ensemble describe small isolated quantum systems?
- Signatures of chaos and thermalization in the dynamics of many-body quantum systems
- Localized dynamics following a quantum quench in a non-integrable system: An example on the sawtooth ladder
- Bose-Hubbard ladder subject to effective magnetic field: quench dynamics in a harmonic trap
- Temperature of a single chaotic eigenstate
- Self-averaging in many-body quantum systems out of equilibrium: Time dependence of distributions
- Reducing dynamical fluctuations and enforcing self-averaging by opening many-body quantum systems
- Quantum coherence controls the nature of equilibration in coupled chaotic systems
- Decoherence of a singlet-triplet superposition state under dipolar interactions of an uncorrelated environment
- Comparison of the Iterated Equation of Motion Approach and the Density Matrix Formalism for the Quantum Rabi Model
- Emergent multifractality in power-law decaying eigenstates
- Localized Thermal States
- Relaxation dynamics of ultracold bosons in a double-well potential: Thermalization and prethermalization in a nearly integrable model
- Quantifying operator spreading and chaos in Krylov subspaces with quantum state reconstruction
- Equilibration of Isolated Systems: investigating the role of coarse-graining on the initial state magnetization
- Sunburst quantum Ising model under interaction quench: entanglement and role of initial state coherence
- Reciprocal Floquet thermalization in one-dimensional Rydberg atom array
- Information acquisition, scrambling, and sensitivity to errors in quantum chaos
- Nonequilibrium localization and the interplay between disorder and interactions