On the Conditions for a Quantum Violent Relaxation
arXiv:2312.14768 · doi:10.1103/PhysRevB.111.214301
Abstract
In general, classical fully-connected systems are known to undergo violent relaxation. This phenomenon refers to the relaxation of observables to stationary, non-thermal, values on a finite timescale, despite their long-time dynamics being dominated by mean-field effects in the thermodynamic limit. Here, we analyze the ``quantum" violent relaxation by studying the dynamics of generic many-body systems with two-body, all-to-all, interactions in the thermodynamic limit. We show that, in order for violent relaxation to occur very specific conditions on the spectrum of the mean-field effective Hamiltonian have to be met. These conditions are hardly met and ``quantum" violent relaxation is observed rarely with respect to its classical counterpart. Our predictions are validated by the study of a spin model which, depending on the value of the coupling, shows a transition between violent-relaxation and a generic prethermal phase. We also analyze a spin version of the quantum Hamiltonian-Mean-Field model, which is shown not to exhibit violent-relaxation. Finally, we discuss how the violent-relaxation picture emerges back in the classical limit. Our results demonstrate how, even in the mean-field regime, quantum effects have a rather dramatic impact on the dynamics, paving the way to a better understanding of light-matter coupled systems.
6 + 6 pages, 2+2 figures
References in corpus (59)
- Thermalization and its mechanism for generic isolated quantum systems
- 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 Dicke Quantum Phase Transition with a Superfluid Gas in an Optical Cavity
- The physics of dipolar bosonic quantum gases
- Observation of a Discrete Time Crystal
- Observation of discrete time-crystalline order in a disordered dipolar many-body system
- Statistical mechanics and dynamics of solvable models with long-range interactions
- Programmable Quantum Simulations of Spin Systems with Trapped Ions
- Quantum Kibble-Zurek mechanism and critical dynamics on a programmable Rydberg simulator
- Dynamical phase transition in correlated fermionic lattice systems
- Quantum phases from competing short- and long-range interactions in an optical lattice
- Dipolar physics: A review of experiments with magnetic quantum gases
- Cavity QED with Quantum Gases: New Paradigms in Many-Body Physics
- Long-range interacting quantum systems
- Inequivalence of ensembles in a system with long range interactions
- Observation of Discrete-Time-Crystal Signatures in an Ordered Dipolar Many-Body System
- Exact spectrum of the Lipkin-Meshkov-Glick model in the thermodynamic limit and finite-size corrections
- Floquet time crystal in the Lipkin-Meshkov-Glick model
- Scrambling and entanglement spreading in long-range spin chains
- Quantum quenches and off-equilibrium dynamical transition in the infinite-dimensional Bose-Hubbard model
- Dynamical transitions and quantum quenches in mean-field models
- Quantum quenches, dynamical transitions and off-equilibrium quantum criticality
- Verification of a many-ion simulator of the Dicke model through slow quenches across a phase transition
- Large deviation techniques applied to systems with long-range interactions
- Diverging equilibration times in long-range quantum spin models
- Infinite-range Ising ferromagnet in a time-dependent transverse field: quench and ac dynamics near the quantum critical point
- Adiabatic quantum dynamics of the Lipkin-Meshkov-Glick model
- Floquet time crystals in clock models
- Fixed Points Structure & Effective Fractional Dimension for O(N) Models with Long-Range Interactions
- Higher-order and fractional discrete time crystals in clean long-range interacting systems
- Coarse-grained distributions and superstatistics
- Dynamical critical scaling of long-range interacting quantum magnets
- Lynden-Bell and Tsallis distributions for the HMF model
- Incomplete thermalization from trap-induced integrability breaking: lessons from classical hard rods
- Chaotic dynamical ferromagnetic phase induced by non-equilibrium quantum fluctuations
- Origin of the slow growth of entanglement entropy in long-range interacting spin systems
- Prethermalization of atoms due to photon-mediated long-range interactions
- Criticality revealed through quench dynamics the Lipkin-Meshkov-Glick model
- Out-of-equilibrium dynamics of quantum many-body systems with long-range interactions
- Symmetries and conserved quantities of boundary time crystals in generalized spin models
- Metastability and discrete spectrum of long-range systems
- New dynamical scaling universality for quantum networks across adiabatic quantum phase transitions
- Equilibration and prethermalization in the Bose-Hubbard and Fermi-Hubbard models
- Memory of the Initial Conditions in an Incompletely-Chaotic Quantum System: Universal Predictions and an Application to Cold Atoms
- Quantum phase transitions of the diluted O(3) rotor model
- Quantum relaxation and metastability of lattice bosons with cavity-induced long-range interactions
- Quantum XX-model with competing short- and long-range interactions: Phases and phase transitions in and out of equilibrium
- Dissociation of one-dimensional matter-wave breathers due to quantum many-body effects
- Synthetic Dimensions
- Floquet time crystals in driven spin systems with all-to-all -body interactions
- Nonequivalence of ensembles in the Curie-Weiss anisotropic quantum Heisenberg model
- Violent and mild relaxation of an isolated self-gravitating uniform and spherical cloud of particles
- Fractal nature of high-order time crystal phases
- Violent relaxation in quantum fluids with long-range interactions
- Violent relaxation in the Hamiltonian Mean Field model: I. Cold collapse and effective dissipation
- Molecular spectra in collective Dicke states
- Entanglement propagation and dynamics in non-additive quantum systems
- Violent relaxation in the Hamiltonian mean field model: II. Non-equilibrium phase diagrams
- Coarse-grained collisionless dynamics with long-range interactions