Thermalization of long range Ising model in different dynamical regimes: a full counting statistics approach
arXiv:2212.00533 · doi:10.21468/SciPostPhysCore.7.2.017
Abstract
We study thermalization of transverse field Ising chain with power law decaying interaction following a global quantum quench of the transverse field to two different dynamical regimes. We quantify the thermalization behavior by comparing the full probability distribution function (PDF) of the evolving states with the corresponding thermal state given by the Gibbs canonical ensemble (GCE). To this end, we use matrix product state (MPS) based time dependent variational principle (TDVP) algorithm to simulate both real time evolution following a global quantum quench and the finite temperature density operator. We observe that thermalization is strongly suppressed in the region with strong confinement for all the interaction strength considered whereas thermalization occurs in the region with weak confinement.
25 pages, 5 figures in main text
References in corpus (31)
- The density-matrix renormalization group in the age of matrix product states
- Thermalization and its mechanism for generic isolated quantum systems
- Many body localization and thermalization in quantum statistical mechanics
- Real time evolution using the density matrix renormalization group
- Matrix Product Density Operators: Simulation of finite-T and dissipative systems
- Many-body localization edge in the random-field Heisenberg chain
- Quantum Quench in the Transverse Field Ising Chain
- Quench dynamics and non equilibrium phase diagram of the Bose-Hubbard model
- Testing whether all eigenstates obey the Eigenstate Thermalization Hypothesis
- Strong and weak thermalization of infinite non-integrable quantum systems
- Ultracold atoms out of equilibrium
- Strongly correlated fermions after a quantum quench
- Absence of Thermalization in Nonintegrable Systems
- Entanglement entropy for the long range Ising chain
- Nearly-linear light cones in long-range interacting quantum systems
- Eigenstate thermalization within isolated spin-chain systems
- Prethermalization and Persistent Order in the Absence of a Thermal Phase Transition
- Infinite-range Ising ferromagnet in a time-dependent transverse field: quench and ac dynamics near the quantum critical point
- False vacuum decay in quantum spin chains
- Entanglement generation in QED scattering processes
- Prethermalization in one-dimensional quantum many-body systems with confinement
- Local measures of dynamical quantum phase transitions
- Full counting statistics in the spin-1/2 Heisenberg XXZ chain
- Finite-temperature critical behavior of long-range quantum Ising models
- Discrete truncated Wigner approach to dynamical phase transitions in Ising models after a quantum quench
- Entanglement dynamics in confining spin chains
- Eigenstate Thermalization in Long-Range Interacting Systems
- Quantum chaos and ensemble inequivalence of quantum long-range Ising chains
- Holographic Quenches in a Confined Phase
- Dynamics of the order-parameter statistics in the long-range Ising model
- Matrix Product States with Backflow correlations
Cited by in corpus (5)
- Anticoncentration and state design of random tensor networks
- Measuring full counting statistics in a trapped-ion quantum simulator
- Multiparticle Quantum Heat Engine: Exploring the Impact of Criticality on Efficiency
- Dynamical deconfinement transition driven by density of excitations
- Full distribution and large deviations of local observables in an exactly solvable current carrying steady state of a strongly driven XXZ chain