Onset of chaos and relaxation in isolated systems of interacting spins-1/2: energy shell approach
arXiv:1201.0186 · doi:10.1103/PhysRevE.85.036209
Abstract
We study the onset of chaos and statistical relaxation in two isolated dynamical quantum systems of interacting spins-1/2, one of which is integrable and the other chaotic. Our approach to identifying the emergence of chaos is based on the level of delocalization of the eigenstates with respect to the energy shell, the latter being determined by the interaction strength between particles or quasi-particles. We also discuss how the onset of chaos may be anticipated by a careful analysis of the Hamiltonian matrices, even before diagonalization. We find that despite differences between the two models, their relaxation process following a quench is very similar and can be described analytically with a theory previously developed for systems with two-body random interactions. Our results imply that global features of statistical relaxation depend on the degree of spread of the eigenstates within the energy shell and may happen to both integrable and non-integrable systems.
14 pages, 14 figures, version as published
References in corpus (22)
- Many-Body Physics with Ultracold Gases
- Thermalization and its mechanism for generic isolated quantum systems
- Probing the relaxation towards equilibrium in an isolated strongly correlated 1D Bose gas
- Quantum Simulation of Antiferromagnetic Spin Chains in an Optical Lattice
- Non-equilibrium coherence dynamics in one-dimensional Bose gases
- Quantum criticality in an Ising chain: experimental evidence for emergent E8 symmetry
- Time-resolved Observation and Control of Superexchange Interactions with Ultracold Atoms in Optical Lattices
- Quench dynamics and non equilibrium phase diagram of the Bose-Hubbard model
- Breakdown of thermalization in finite one-dimensional systems
- Strong and weak thermalization of infinite non-integrable quantum systems
- Strongly correlated fermions after a quantum quench
- Conservation laws, integrability and transport in one-dimensional quantum systems
- Controlling Correlated Tunneling and Superexchange Interactions with AC-Driven Optical Lattices
- Entropy of isolated quantum systems after a quench
- Quantum chaos and thermalization in gapped systems
- Quenches in quantum many-body systems: One-dimensional Bose-Hubbard model reexamined
- Initial state dependence of the quench dynamics in integrable quantum systems
- Quantum Chaos, Delocalization, and Entanglement in Disordered Heisenberg Models
- Domain wall dynamics in integrable and chaotic spin-1/2 chains
- Comment on "Anomalous Thermal Conductivity of Frustrated Heisenberg Spin Chains and Ladders"
- Thermalization in the Two-Body Random Ensemble
- Phase-space characterization of complexity in quantum many-body dynamics
Cited by in corpus (93)
- From Quantum Chaos and Eigenstate Thermalization to Statistical Mechanics and Thermodynamics
- Equilibration, thermalisation, and the emergence of statistical mechanics in closed quantum systems
- Thermalization and prethermalization in isolated quantum systems: a theoretical overview
- Quantum Chaos and Thermalization in Isolated Systems of Interacting Particles
- Off-diagonal matrix elements of local operators in many-body quantum systems
- Eigenstate thermalization hypothesis (ETH) and integrability in quantum spin chains
- Thouless and relaxation time scales 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
- Extended nonergodic states in disordered many-body quantum systems
- Global characteristics of all eigenstates of local many-body Hamiltonians: participation ratio and entanglement entropy
- Localization in a random model with the long-range interaction: Intermediate case between single particle and many-body problems
- Multifractal dimensions for random matrices, chaotic quantum maps, and many-body systems
- Local quenches with global effects in interacting quantum systems
- Gauging classical and quantum integrability through out-of-time ordered correlators
- Quench Dynamics of Isolated Many-Body Quantum Systems
- Time Fluctuations in Isolated Quantum Systems of Interacting Particles
- Fundamental Asymmetry in Quenches Between Integrable and Nonintegrable Systems
- General Features of the Relaxation Dynamics of Interacting Quantum Systems
- Absence of exponential sensitivity to small perturbations in nonintegrable systems of spins 1/2
- Dynamical Manifestations of Quantum Chaos: Correlation Hole and Bulge
- Integrability vs Quantum Thermalization
- 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
- Drive Induced Delocalization in Aubry-André Model
- Speck of Chaos
- Power-law decay exponents: a dynamical criterion for predicting thermalization
- Nonexponential fidelity decay in isolated interacting quantum systems
- Timescales in the quench dynamics of many-body quantum systems: Participation ratio vs out-of-time ordered correlator
- Realistic many-body quantum systems vs full random matrices: static and dynamical properties
- Statistical properties of eigenstate amplitudes in complex quantum systems
- Stationary entropies after a quench from excited states in the Ising chain
- 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
- Quantum coherence as a signature of chaos
- Many-body entropies, correlations, and emergence of statistical relaxation in interaction quench dynamics of ultracold bosons
- Off-Diagonal Observable Elements from Random Matrix Theory: Distributions, Fluctuations, and Eigenstate Thermalization
- Self-averaging in many-body quantum systems out of equilibrium: Chaotic systems
- Interacting bosons in a triple well: Preface of many-body quantum chaos
- Exponentially fast dynamics of chaotic many-body systems
- Random Matrix Theory of the Isospectral twirling
- Initial state dependence of the quench dynamics in integrable quantum systems. III. Chaotic states
- A two-band Bose-Hubbard model for many-body resonant tunneling in the Wannier-Stark system
- Quantum Chaotic Fluctuation-Dissipation Theorem: Effective Brownian Motion in Closed Quantum Systems
- Relaxation, chaos, and thermalization in a three-mode model of a BEC
- Thermalization and chaos in a 1+1d QFT
- Many-body localization and thermalization in the full probability distribution function of observables
- Scrambling and quantum chaos indicators from long-time properties of operator distributions
- Statistics of phase space localization measures and quantum chaos in the kicked top model
- Finite-size scaling with respect to interaction and disorder strength at the many-body localization transition
- How accurately can the microcanonical ensemble describe small isolated quantum systems?
- Quantum Signature of Chaos and Thermalization in Kicked Dicke Model
- From few- to many-body quantum systems
- Quantum chaos, equilibration and control in extremely short spin chains
- Thermalization in one- plus two-body ensembles for dense interacting boson systems
- Emergence of correlations in the process of thermalization of interacting bosons
- Characterization of random features of chaotic eigenfunctions in unperturbed basis
- Universal scaling of spin mixing dynamics in a strongly interacting one-dimensional Fermi gas
- Temperature of a single chaotic eigenstate
- Equilibration of quantum chaotic systems
- Chaos in a deformed Dicke model
- Work statistics for sudden quenches in interacting quantum many-body systems
- Proliferation of effective interactions: decoherence-induced equilibration in a closed many-body system
- Optimal control of many-body quantum dynamics: chaos and complexity
- Tower of quantum scars in a partially many-body localized system
- From integrability to chaos: the quantum-classical correspondence in a triple well bosonic model
- Weak ergodicity breaking in Josephson-junction arrays
- Random matrix ensemble with random two-body interactions in presence of a mean-field for spin one boson systems
- Relaxation of isolated quantum systems beyond chaos
- Decoherence factor as a convolution: an interplay between a Gaussian and an exponential coherence loss
- Quantum chaos in interacting Bose-Bose mixtures
- Interacting quantum walk on a graph
- Unbounded entropy production and violent fragmentation for repulsive-to-attractive interaction quench in long-range interacting systems
- Relaxation of Shannon entropy for trapped interacting bosons with dipolar interactions
- Hierarchical relaxation dynamics in a tilted two-band Bose-Hubbard model
- The Ergodicity Landscape of Quantum Theories
- Statistical distribution of components of energy eigenfunctions: from nearly-integrable to chaotic
- Relaxation dynamics of ultracold bosons in a double-well potential: Thermalization and prethermalization in a nearly integrable model
- Generalized Survival Probability
- Manifold approach for a many-body Wannier-Stark system: localization and chaos in energy space
- Localized Thermal States
- Canonical density matrices from eigenstates of mixed systems
- Eigenstate thermalization and disappearance of quantum many-body scar states in interacting fermion systems
- Nonequilibrium many-body quantum dynamics: from full random matrices to real systems
- Key Observable for Linear Thermalization
- New equilibrium ensembles for isolated quantum systems
- Interaction Quench Dynamics and Stability of Quantum Vortices in Rotating Bose-Einstein Condensates
- Thermalization in many-fermion quantum systems with one- plus random -body interactions
- Out-of-equilibrium Eigenstate Thermalization Hypothesis
- Classical periodic trajectories and quantum scars in many-spin systems
- Roles of energy eigenstates and eigenvalues in equilibration of isolated quantum systems
- Quantum quenches across continuous and first-order quantum transitions in one-dimensional quantum Ising models
- Characterizing quantum dynamics using multipartite entanglement generation
- Entropy production and statistical relaxation of dipolar bosons and fermions in interaction quench dynamics