Classical periodic trajectories and quantum scars in many-spin systems
arXiv:2409.00258 · doi:10.1103/zcgw-q34x
Abstract
We numerically investigate the stability of exceptional periodic classical trajectories in rather generic chaotic many-body systems and explore a possible connection between these trajectories and exceptional nonthermal quantum eigenstates known as "quantum many-body scars". The systems considered are chaotic spin chains with short-range interactions, both classical and quantum. On the classical side, the chosen periodic trajectories are such that all spins instantaneously point in the same direction, which evolves as a function of time. We find that the largest Lyapunov exponents characterising the stabillity of these trajectories have surprisingly strong and nontrivial dependencies on the interaction constants and chain lengths. In particular, we identify rather long spin chains, where the above periodic trajectories are Lyapunov-stable on many-body energy shells overwhelmingly dominated by chaotic motion. We also find that instabilities around periodic trajectories in modestly large spin chains develop into a transient nearly quasiperiodic non-ergodic regime. In some cases, the lifetime of this regime is extremely long, which we interpret as a manifestation of Arnold diffusion in the vicinity of integrable dynamics. On the quantum side, we numerically investigate the dynamics of quantum states starting with all spins initially pointing in the same direction: these are the quantum counterparts of the initial conditions for the above periodic classical trajectories. Our investigation reveals the existence of quantum many-body scars for numerically accessible finite chains of spins 3/2 and higher. The dynamic thermalisation process dominated by quantum scars is shown to exhibit a slowdown in comparison with generic thermalisation at the same energy. Finally, we identify quantum signatures of the proximity to a classical separatrix of the periodic motion.
35 pages, 26 figures
References in corpus (114)
- Probing many-body dynamics on a 51-atom quantum simulator
- From Quantum Chaos and Eigenstate Thermalization to Statistical Mechanics and Thermodynamics
- A bound on chaos
- Metal-insulator transition in a weakly interacting many-electron system with localized single-particle states
- Localization of interacting fermions at high temperature
- Many-body localization, thermalization, and entanglement
- Relaxation in a Completely Integrable Many-Body Quantum System: An Ab Initio Study of the Dynamics of the Highly Excited States of Lattice Hard-Core Bosons
- The many-body localization phase transition
- Universal High-Frequency Behavior of Periodically Driven Systems: from Dynamical Stabilization to Floquet Engineering
- Quantum many-body systems out of equilibrium
- Observation of a Many-Body Dynamical Phase Transition with a 53-Qubit Quantum Simulator
- The foundations of statistical mechanics from entanglement: Individual states vs. averages
- Relaxation and Pre-thermalization in an Isolated Quantum System
- The distribution of the ratio of consecutive level spacings in random matrix ensembles
- Quantum many-body scars
- Quantum Time Crystals
- Topological mechanics of gyroscopic metamaterials
- Canonical Typicality
- Operator hydrodynamics, OTOCs, and entanglement growth in systems without conservation laws
- Eigenstate Thermalization Hypothesis
- Long-time behavior of periodically driven isolated interacting lattice systems
- Quantum Many-Body Scars and Weak Breaking of Ergodicity
- Operator spreading and the emergence of dissipative hydrodynamics under unitary evolution with conservation laws
- Time crystals: a review
- Fate of many-body localization under periodic driving
- Strong and weak thermalization of infinite non-integrable quantum systems
- Classical Time Crystals
- A Universal Operator Growth Hypothesis
- Periodic orbits, entanglement and quantum many-body scars in constrained models: matrix product state approach
- Random Matrices and Chaos in Nuclear Physics
- Extended slow dynamical regime close to the many-body localization transition
- Exact Quantum Many-Body Scar States in the Rydberg-Blockaded Atom Chain
- The Ergodic Side of the Many-Body Localization Transition
- Information Scrambling in Computationally Complex Quantum Circuits
- Observation of Discrete-Time-Crystal Signatures in an Ordered Dipolar Many-Body System
- Quantum transport through a Tonks-Girardeau gas
- Observation of time quasicrystal and its transition to superfluid time crystal
- Quantum and Classical Lyapunov Exponents in Atom-Field Interaction Systems
- Dynamical typicality of quantum expectation values
- Onsager's Scars in Disordered Spin Chains
- Weak Quantum Chaos
- Adiabatic eigenstate deformations as a sensitive probe for quantum chaos
- Classical Discrete Time Crystals
- Onset of chaos and relaxation in isolated systems of interacting spins-1/2: energy shell approach
- Quantum scars from zero modes in an Abelian lattice gauge theory on ladders
- Observation of Floquet prethermalization in dipolar spin chains
- Glimmers of a Quantum KAM Theorem: Insights from Quantum Quenches in One Dimensional Bose Gases
- Quantum Dynamics in Krylov Space: Methods and Applications
- Thermodynamics of quantum information scrambling
- Scrambling of Quantum Information in Quantum Many-Body Systems
- Regression relation for pure quantum states and its implications for efficient computing
- Period- discrete time crystals and quasicrystals with ultracold bosons
- Quasiparticle explanation of "weak thermalization" regime under quench in a non-integrable quantum spin chain
- Correspondence principle for many-body scars in ultracold Rydberg atoms
- Stabilizing two-dimensional quantum scars by deformation and synchronization
- Absence of exponential sensitivity to small perturbations in nonintegrable systems of spins 1/2
- Irregular Dynamics in a One-Dimensional Bose System
- Relevance of the eigenstate thermalization hypothesis for thermal relaxation
- Strong and weak chaos in weakly nonintegrable many-body Hamiltonian systems
- Observation of thermalization and information scrambling in a superconducting quantum processor
- Statistical mechanics of Floquet systems with regular and chaotic states
- Lyapunov growth in quantum spin chains
- Chaos and quantum scars in Bose-Josephson junction coupled to a bosonic mode
- Classical many-body chaos with and without quasiparticles
- Semiclassical echo dynamics in the Sachdev-Ye-Kitaev model
- Largest Lyapunov exponents for lattices of interacting classical spins
- Typical state of an isolated quantum system with fixed energy and unrestricted participation of eigenstates
- Genuine many-body quantum scars along unstable modes in Bose-Hubbard systems
- To heat or not to heat: time crystallinity and finite-size effects in clean Floquet systems
- Loschmidt Echo in Many-Body Localized Phase
- Universal Long-time Behavior of Nuclear Spin Decays in a Solid
- Many-Body Dynamical Localization in a Kicked Lieb-Liniger Gas
- Quantum scars and regular eigenstates in a chaotic spinor condensate
- Quantum versus Classical Dynamics in Spin Models: Chains, Ladders, and Square Lattices
- On the long-time behavior of spin echo and its relation to free induction decay
- Non-thermal statistics in isolated quantum spin clusters after a series of perturbations
- Phase separation can be stronger than chaos
- Long-time Behavior of Nuclear Spin Decays in Various Lattices
- Optimal steering of matrix product states and quantum many-body scars
- Sensitivity to small perturbations in systems of large quantum spins
- Signatures of Chaos in Time Series Generated by Many-Spin Systems at High Temperatures
- Experimental Realization of Discrete Time Quasi-Crystals
- Eigenmodes in the long-time behavior of a coupled spin system measured with nuclear magnetic resonance
- Lyapunov instabilities in lattices of interacting classical spins at infinite temperature
- Phase separation in the vicinity of "quantum critical" doping concentration: implications for high temperature superconductors
- Nonequilibrium Criticality at the Onset of Time-Crystalline Order
- A necessary condition for the thermalization of a quantum system coupled to a quantum bath
- Mechanism of slow equilibration of isolated quantum systems
- Effects of scarring on quantum chaos in disordered quantum wells
- Effectiveness of classical spin simulations for describing NMR relaxation of quantum spins
- Slow Nonthermalizing Dynamics in a Quantum Spin Glass
- Dynamical thermalization in isolated quantum dots and black holes
- Quantum dynamics in one and two dimensions via recursion method
- Extracting Lyapunov exponents from the echo dynamics of Bose-Einstein condensates on a lattice
- Dynamical route to ergodicity and quantum scarring in kicked coupled top
- Suppression of heating in quantum spin clusters under periodic driving as a dynamic localization effect
- Thermalization slowing down in multidimensional Josephson junction networks
- Classical route to ergodicity and scarring phenomena in a two-component Bose-Josephson junction
- Microcanonical windows on quantum operators
- Hybrid quantum-classical method for simulating high-temperature dynamics of nuclear spins in solids
- Tuning between continuous time crystals and many-body scars in long-range XYZ spin chains
- Bridging quantum many-body scar and quantum integrability in Ising chains with transverse and longitudinal fields
- Quantum many-body scars from unstable periodic orbits
- Genuine quantum scars in many-body spin systems
- Estimating ergodization time of a chaotic many-particle system from a time reversal of equilibrium noise
- Quantum-classical correspondence of strongly chaotic many-body spin models
- Long-living prethermalization in nearly integrable spin ladders
- Controlling Many-Body Quantum Chaos: Bose-Hubbard systems
- Characterization of hybrid quantum eigenstates in systems with mixed classical phasespace
- Estimating heating times in periodically driven quantum many-body systems via avoided crossing spectroscopy
- Stability of Quantum Statistical Ensembles with Respect to Local Measurements
- Classical Drift in the Arnold Web Induces Quantum Delocalization Transition
- Spin excitation spectrum of high-temperature cuprate superconductors from finite cluster simulations
- Chaos enhancement in large-spin chains